<?xml version="1.0" encoding="UTF-8"?><article xml:lang="en" article-type="review-article"><front><journal-meta><journal-id journal-id-type="pmc-domain-id">365</journal-id><journal-id journal-id-type="pmc-domain">springeropen</journal-id><journal-title-group><journal-title>Current Addiction Reports</journal-title><abbrev-journal-title>Curr Addict Rep</abbrev-journal-title></journal-title-group></journal-meta><article-meta><article-id pub-id-type="pmcid">PMC13086809</article-id><article-id pub-id-type="pmcaid">13086809</article-id><article-id pub-id-type="pmcaiid">13086809</article-id><article-id pub-id-type="pmid">42004860</article-id><article-id pub-id-type="doi">10.1007/s40429-026-00735-1</article-id><title-group><article-title>Joint Relations Among Cannabis, Sleep, and Affective Symptomatology: A Scoping Review</article-title></title-group><contrib-group content-type="author"><contrib><name name-style="western"><surname>Berey</surname><given-names initials="BL">Benjamin L</given-names></name><xref ref-type="aff" rid="Aff1">1</xref><xref ref-type="aff" rid="Aff2">2</xref><xref ref-type="aff" rid="Aff3">3</xref><xref ref-type="author-notes" rid="_fncrsp93pmc__">✉</xref></contrib><contrib><name name-style="western"><surname>Thomas</surname><given-names initials="SA">Sarah A</given-names></name><xref ref-type="aff" rid="Aff2">2</xref><xref ref-type="aff" rid="Aff3">3</xref><xref ref-type="aff" rid="Aff4">4</xref><xref ref-type="aff" rid="Aff5">5</xref></contrib><contrib><name name-style="western"><surname>Sokolovsky</surname><given-names initials="AW">Alexander W</given-names></name><xref ref-type="aff" rid="Aff2">2</xref></contrib><contrib><name name-style="western"><surname>Gunn</surname><given-names initials="RL">Rachel L</given-names></name><xref ref-type="aff" rid="Aff2">2</xref><xref ref-type="aff" rid="Aff3">3</xref></contrib><contrib><name name-style="western"><surname>Miller</surname><given-names initials="MB">Mary Beth</given-names></name><xref ref-type="aff" rid="Aff6">6</xref></contrib></contrib-group><aff id="Aff1"><label>1</label>Providence VA Medical Center, Providence, RI USA </aff><aff id="Aff2"><label>2</label>Center for Alcohol and Addiction Studies, Brown University School of Public Health, Providence, United States </aff><aff id="Aff3"><label>3</label>Department of Psychiatry and Human Behavior, Brown University Alpert Medical School, Providence, United States </aff><aff id="Aff4"><label>4</label>Bradley Hasbro Children’s Research Center, Providence, United States </aff><aff id="Aff5"><label>5</label>Carney Institute for Brain Science, Brown University, 164 Angell St., 4th Floor, Box 1901, Providence, RI 02912 USA </aff><aff id="Aff6"><label>6</label>Department of Psychiatry, University of Missouri, 1 Hospital Drive DC067.00, Columbia, MO 65212 USA </aff><author-notes><fn id="_fncrsp93pmc__"><label>✉</label><p>Corresponding author.</p></fn></author-notes><pub-date><day>16</day><month>4</month><year>2026</year></pub-date><volume>13</volume><issue>1</issue><fpage>39</fpage><page-range>39</page-range><pub-history><event event-type="pmc-release"><date><day>18</day><month>4</month><year>2026</year></date></event></pub-history><permissions><copyright-statement>© This is a U.S. Government work and not under copyright protection in the US; foreign copyright protection may apply 2026</copyright-statement><license><license-p><bold>Open Access</bold> This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit <ext-link xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="https://creativecommons.org/licenses/by/4.0/" ext-link-type="uri">http://creativecommons.org/licenses/by/4.0/</ext-link>.</license-p></license></permissions><self-uri xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="40429_2026_Article_735.pdf" content-type="pmc-pdf"><?cloudpmc-path 733a/13086809/891feef37c1f/40429_2026_Article_735.pdf?><?cloudpmc-bucket app?><?size 1378841?></self-uri><abstract id="Abs1" abstract-type="structured"><title>Abstract</title><sec id="sec1" disp-level="2"><title>Purpose of Review</title><p id="Par1">This scoping review used a five-stage framework to evaluate empirical studies positing anxiety and depression as mechanisms or moderators in associations between cannabis use and sleep. Applicable peer-reviewed studies were identified in Google Scholar and PubMed using relevant search terms (e.g., cannabis, sleep, depression, anxiety).</p></sec><sec id="sec2" disp-level="2"><title>Recent Findings</title><p id="Par2">Of the 20 articles included, most examined cannabis effects on sleep using prospective designs with adults recruited based on anxiety and/or depression symptomatology. Fewer studies tested bidirectional associations between cannabis and sleep. Among adults reporting clinically significant symptoms of anxiety and depression at baseline, certain cannabis product formulations were associated with concurrent and prospective improvements in subjective sleep phenotypes. However, this pattern of findings was not evident among those without anxiety/depression, none of the designs were experimental, and only one study included objective sleep measures.</p></sec><sec id="sec3" disp-level="2"><title>Summary</title><p id="Par3">Providers should be aware that cannabis’ perceived sleep benefits are more pronounced among those with anxiety/depressive disorders. Experimental research with objective measures testing how and for whom sleep and cannabis are linked is needed.</p></sec><sec id="kwd-group1" xml:lang="en" sec-type="kwd-group" disp-level="2"><p><bold>Keywords:</bold> Marijuana, Behavioral sleep medicine, Depression, Anxiety, Review</p></sec></abstract><custom-meta-group><custom-meta><meta-name>status</meta-name><meta-value>released</meta-value></custom-meta><custom-meta><meta-name>display-pdf</meta-name><meta-value>yes</meta-value></custom-meta><custom-meta><meta-name>is-in-collection-domain</meta-name><meta-value>yes</meta-value></custom-meta><custom-meta><meta-name>is-olf</meta-name><meta-value>no</meta-value></custom-meta><custom-meta><meta-name>is-manuscript</meta-name><meta-value>no</meta-value></custom-meta><custom-meta><meta-name>is-preprint</meta-name><meta-value>no</meta-value></custom-meta><custom-meta><meta-name>is-journal-matter</meta-name><meta-value>no</meta-value></custom-meta><custom-meta><meta-name>is-scanned</meta-name><meta-value>no</meta-value></custom-meta><custom-meta><meta-name>is-retracted</meta-name><meta-value>no</meta-value></custom-meta></custom-meta-group></article-meta><notes notes-type="article-notes"><sec id="historyarticle-meta1" sec-type="history" disp-level="2"><p>Received 2025 Mar 3; Accepted 2026 Mar 20; Issue date 2026.</p></sec></notes></front><body><sec id="Sec1" disp-level="1"><title>Introduction</title><p id="Par4"> Cannabis’ therapeutic potential has been recognized globally for centuries and has been used in Western medicine since the 19th century [<xref rid="CR1" ref-type="bibr">1</xref>, <xref rid="CR2" ref-type="bibr">2</xref>]. In North America, Canada’s 2018 Cannabis Act legalized cannabis nationwide, Mexico decriminalized recreational cannabis and legalized medical cannabis, and the United States (U.S.) remains in flux. California was the first state in the U.S. to legalize cannabis for medical purposes in 1996, and to date all but one state have at least partially recognized the medical benefits of cannabis [<xref rid="CR3" ref-type="bibr">3</xref>]. Moreover, many European countries have enacted medical cannabis laws over the past decade [<xref rid="CR4" ref-type="bibr">4</xref>]. Contemporaneously, epidemiologic data suggests that poor sleep health [<xref rid="CR5" ref-type="bibr">5</xref>] has increased in recent decades [<xref rid="CR6" ref-type="bibr">6</xref>, <xref rid="CR7" ref-type="bibr">7</xref>]. Further, sleep disorders such as insomnia are common across the lifespan with population estimates ranging from 6 to 30% depending on the sample, definition, and time-frame used [<xref rid="CR8" ref-type="bibr">8</xref>–<xref rid="CR10" ref-type="bibr">10</xref>]. See Table <xref rid="Tab1" ref-type="table">1</xref> for a glossary of relevant sleep terminology.</p><table-wrap id="Tab1" position="float"><?disp-level 2?><label>Table 1</label><caption><p>Glossary of relevant sleep terminology</p></caption><table frame="hsides" rules="groups"><tbody><tr><td align="left" colspan="1" rowspan="1">Insomnia</td><td align="left" colspan="1" rowspan="1">Sleep disorder characterized by difficulties falling asleep, staying asleep, and achieving good-quality sleep that impacts daytime functioning</td></tr><tr><td align="left" colspan="1" rowspan="1">Polysomnography (PSG)</td><td align="left" colspan="1" rowspan="1">Gold standard laboratory sleep assessment technique capturing brain activity, eye movement, and muscle tone</td></tr><tr><td align="left" colspan="1" rowspan="1">Rapid eye movement (REM) sleep</td><td align="left" colspan="1" rowspan="1">Sleep stage defined by REM, muscle paralysis, and brain activity comparable to wakefulness</td></tr><tr><td align="left" colspan="1" rowspan="1">Sleep architecture</td><td align="left" colspan="1" rowspan="1">Physiological sleep stages, including REM and non-REM sleep measured via polysomnography</td></tr><tr><td align="left" colspan="1" rowspan="1">Sleep efficiency (SE)</td><td align="left" colspan="1" rowspan="1">Percent of time in bed spent sleeping</td></tr><tr><td align="left" colspan="1" rowspan="1">Sleep health</td><td align="left" colspan="1" rowspan="1">Multifaceted pattern of sleep/wake behaviors across five dimensions (i.e., sleep duration, efficiency, timing, quality, and daytime functioning) that promote general well-being</td></tr><tr><td align="left" colspan="1" rowspan="1">Sleep latency (SoL)</td><td align="left" colspan="1" rowspan="1">Amount of time taken to fall asleep</td></tr><tr><td align="left" colspan="1" rowspan="1">Sleep quality</td><td align="left" colspan="1" rowspan="1">Subjective evaluation of good/poor sleep</td></tr><tr><td align="left" colspan="1" rowspan="1">Slow-wave sleep (SWS)</td><td align="left" colspan="1" rowspan="1">Stage of deep sleep indicated by low frequency and high amplitude waves</td></tr><tr><td align="left" colspan="1" rowspan="1">Total sleep time (TST)</td><td align="left" colspan="1" rowspan="1">Total amount of time spent asleep</td></tr><tr><td align="left" colspan="1" rowspan="1">Wake after sleep onset (WASO)</td><td align="left" colspan="1" rowspan="1">Amount of time spent awake after sleep onset and prior to final awakening</td></tr></tbody></table></table-wrap><p id="Par6">In the search for solutions to improve sleep, particularly those perceived as natural and safer than traditional pharmacotherapies, cannabis has emerged as a common sleep aid [<xref rid="CR11" ref-type="bibr">11</xref>–<xref rid="CR16" ref-type="bibr">16</xref>]. Despite no FDA-approved cannabis-derived drugs for its treatment, insomnia is among the myriad qualifying conditions for obtaining a medical cannabis card in many states [<xref rid="CR17" ref-type="bibr">17</xref>–<xref rid="CR19" ref-type="bibr">19</xref>]. For example, objective retail sales data from Colorado and Medicaid’s nationwide State Drug Utilization Data indicate that purchases and prescriptions of traditional sleep aids decreased following cannabis legalization (medical or recreational [<xref rid="CR20" ref-type="bibr">20</xref>, <xref rid="CR21" ref-type="bibr">21</xref>]). Likewise, depending on the sample characteristics and time-frames used, survey data from diverse populations indicate that up to 85% of those who use cannabis do so for sleep, with up to 68% reporting daily use for sleep [<xref rid="CR11" ref-type="bibr">11</xref>, <xref rid="CR16" ref-type="bibr">16</xref>, <xref rid="CR22" ref-type="bibr">22</xref>–<xref rid="CR24" ref-type="bibr">24</xref>]. As such, a deeper understanding of how cannabis and sleep are related is necessary to develop more effective individual-, organizational-, and structural-level strategies to improve sleep health. Given individual differences in subjective evaluations of sleep quality, better understanding of cannabis effects on objective measures of sleep would be particularly helpful in informing healthcare decisions.</p><sec id="Sec2" disp-level="2"><title>Bidirectional Associations Between Cannabis and Sleep</title><p id="Par7">Theory and empirical evidence highlight the bidirectional nature between cannabis and sleep [<xref rid="CR25" ref-type="bibr">25</xref>–<xref rid="CR27" ref-type="bibr">27</xref>] (see Fig. <xref rid="Fig1" ref-type="fig">1</xref>). That is, sleep disorders and poor sleep health confer risk for various cannabis-related outcomes, including, but not limited to, an earlier age of initiation, increased cannabis use frequency and related problems, cannabis use disorder (CUD) severity, and worse cannabis treatment outcomes [<xref rid="CR28" ref-type="bibr">28</xref>–<xref rid="CR34" ref-type="bibr">34</xref>]. Conversely, the two most commonly consumed cannabinoids (i.e., delta-9-tetrahydrocannabinol [THC; psychoactive] and cannabidiol [CBD; non-psychoactive]) may alter the sleep-wake cycle [<xref rid="CR35" ref-type="bibr">35</xref>] in ways that improve certain sleep phenotypes in the short-term (e.g. [<xref rid="CR36" ref-type="bibr">36</xref>, <xref rid="CR37" ref-type="bibr">37</xref>]), . Indeed, experimental and observational research measuring sleep via self-report or polysomnography (PSG) demonstrate that various cannabis formulations (e.g., whole-plant material smoked or vaporized, liquid THC administered orally) can reduce sleep onset latency (SoL) and wake after sleep onset (WASO), and increase sleep durations in both animals and humans [<xref rid="CR38" ref-type="bibr">38</xref>–<xref rid="CR42" ref-type="bibr">42</xref>].</p><fig id="Fig1" position="float"><?disp-level 3?><label>Fig. 1</label><caption><p>Theoretical model outlining reciprocal relations between cannabis use and sleep. Dashed arrows depict potential mediation and moderation pathways between cannabis, sleep, and depression and anxiety</p></caption><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="image" id="d33e448" xlink:href="40429_2026_735_Fig1_HTML.jpg"><?cloudpmc-path blobs/733a/13086809/4ccd7666035b/40429_2026_735_Fig1_HTML.jpg?><?cloudpmc-bucket cdn?><?image-server-status LOAD_COMPLETED?><?original-height 1058?><?original-width 1524?><?scaled-height 529?><?scaled-width 762?></graphic><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="thumb" xlink:href="40429_2026_735_Fig1_HTML.gif"><?cloudpmc-path blobs/733a/13086809/997d5a5c22cb/40429_2026_735_Fig1_HTML.gif?><?cloudpmc-bucket cdn?></graphic></alternatives></fig><p id="Par9">While initial sleep improvements reinforce continued use, individuals can develop tolerance to cannabis’ sedative effects in as little as one week of daily use [<xref rid="CR43" ref-type="bibr">43</xref>]. In turn, using cannabis in higher quantities impairs sleep architecture (e.g., poorer sleep efficiency [SE], longer REM latency, suppressed slow wave sleep [SWS]; [<xref rid="CR44" ref-type="bibr">44</xref>–<xref rid="CR46" ref-type="bibr">46</xref>]). Notably, cannabis’ sleep impairing effects are more pronounced in individuals with chronic use [<xref rid="CR31" ref-type="bibr">31</xref>, <xref rid="CR43" ref-type="bibr">43</xref>, <xref rid="CR47" ref-type="bibr">47</xref>], or when used in larger amounts than usual among individuals who use less frequently (e.g. [<xref rid="CR42" ref-type="bibr">42</xref>, <xref rid="CR48" ref-type="bibr">48</xref>]), . For example, adults reporting chronic, heavy cannabis use experience worse sleep efficiency, more sleep disturbances, and higher rates of insomnia measured via PSG and self-reports than adults with non-daily or no recent use [<xref rid="CR31" ref-type="bibr">31</xref>, <xref rid="CR47" ref-type="bibr">47</xref>]. Finally, withdrawal-related sleep disturbances are common during periods of abstinence and can persist for several weeks, which in turn may motivate using cannabis for sleep again [<xref rid="CR49" ref-type="bibr">49</xref>–<xref rid="CR52" ref-type="bibr">52</xref>].</p></sec><sec id="Sec3" disp-level="2"><title>Relevance of Affective Symptomatology to Links Between Cannabis and Sleep</title><p id="Par10">There are many challenges to disentangling the nuanced associations between cannabis and sleep. First, sleep is a complex biological process consisting of behavioral and physiological phenotypes, the latter of which requires resource-intensive technologies (e.g., PSG) that are burdensome to participants. Second, cannabis products used in laboratory studies are limited by type, quality, and potency that are likely quite different from commercially available products with varying formulations and cannabinoid concentrations used for sleep [<xref rid="CR53" ref-type="bibr">53</xref>–<xref rid="CR55" ref-type="bibr">55</xref>]. Third, and perhaps most important, comorbid mental health conditions (e.g., anxiety, depression) are prevalent and potentially confounding variables in associations between sleep and cannabis use that make findings harder to interpret and generalize.</p><p id="Par11">Interconnected theoretical and biopsychosocial frameworks indicate that understanding the multifaceted impact of depression and anxiety is key to elucidating some of the complex relations between cannabis use and sleep. First, it is critical to consider <italic>why</italic> individuals use cannabis, given the increased concomitant rates of depression, anxiety, and cannabis use in the US and worldwide [<xref rid="CR56" ref-type="bibr">56</xref>–<xref rid="CR61" ref-type="bibr">61</xref>]. Well-established motivational models of substance use and the self-medication hypothesis posit that cannabis use in the context of depression and/or anxiety symptoms is negatively reinforced by perceived improvements in sleep [<xref rid="CR62" ref-type="bibr">62</xref>, <xref rid="CR63" ref-type="bibr">63</xref>]. Specifically, research investigating links between cannabis use, depression, and anxiety consistently indicates that coping motives (i.e., use for negative affect relief) reinforce continued substance use, with 30–60% of individuals reporting ‘medical’ use for depression or anxiety relief [<xref rid="CR54" ref-type="bibr">54</xref>, <xref rid="CR64" ref-type="bibr">64</xref>]. Second, the hypothalamic-pituitary-adrenal (HPA) axis has been implicated in both stress and sleep [<xref rid="CR65" ref-type="bibr">65</xref>], which could underlie sleep disruptions and internalizing disorders, leading to cannabis use for symptom relief. Similarly, recent research indicates a genetic link between sleep and cannabis use, such that a polygenic risk score for insomnia predicted an earlier cannabis use onset even after controlling for depressive symptoms [<xref rid="CR34" ref-type="bibr">34</xref>]. As such, one can extrapolate that genetic risk for insomnia may also lead to cannabis use through the self-medication of internalizing symptoms with cannabis use.</p></sec><sec id="Sec4" disp-level="2"><title>Cannabis and Depression/Anxiety</title><p id="Par12">It is unsurprising that young adults with depression and anxiety use cannabis – perhaps to cope with negative affect – at considerably higher rates than their counterparts without such symptomatology [<xref rid="CR66" ref-type="bibr">66</xref>, <xref rid="CR67" ref-type="bibr">67</xref>]. Although this evidence highlights the link from depression and anxiety to cannabis use, the reciprocal link is also well established. Epidemiological and cohort evidence suggests causal links between cannabis use and depression onset and symptom severity [<xref rid="CR68" ref-type="bibr">68</xref>, <xref rid="CR69" ref-type="bibr">69</xref>], but less so for the onset of anxiety [<xref rid="CR70" ref-type="bibr">70</xref>]. Taken together, evidence points to a strong reciprocal link between cannabis use with depression and anxiety. Critically, this relationship is closely intertwined with sleep.</p><p id="Par13">Sleep disruption, including either hypersomnia or insomnia, is a canonical symptom in 60–90% of depressive episodes [<xref rid="CR71" ref-type="bibr">71</xref>, <xref rid="CR72" ref-type="bibr">72</xref>]. Insomnia is frequently characterized by shorter sleep durations due to longer SoL and WASO<xref rid="Fn1" ref-type="fn">1</xref> [<xref rid="CR74" ref-type="bibr">74</xref>, <xref rid="CR75" ref-type="bibr">75</xref>]. Similarly, 60–70% of individuals with generalized anxiety disorder (GAD) report sleep disruption, with increased SoL and WASO based on PSG studies [<xref rid="CR76" ref-type="bibr">76</xref>]. Substantial evidence has accrued, however, that sleep disruption is not just an epiphenomenon of mood disorders, but can also precede their onset, including major depressive episodes and panic disorders as a prodromal precursor to both first- and recurrent-onset symptoms [<xref rid="CR71" ref-type="bibr">71</xref>, <xref rid="CR77" ref-type="bibr">77</xref>]. In other words, cannabis use, sleep, and anxiety and depression likely exist in a complex intermediated web. For example, cannabis use may increase the risk for depression and anxiety by directly and/or indirectly disrupting sleep. While using cannabis to cope with negative affect may provide short-term sedative effects, tolerance requires more cannabis to experience the desired effects over time, which could lead to pharmacologically-mediated sleep disruptions. Alternatively, cannabis use could disrupt sleep, or worsen sleep disruptions, contributing to the development of anxiety and depression.</p><p id="Par15">Biological frameworks support connections between sleep, cannabis use, anxiety and depression. For example, the endocannabinoid system (“ECS”) is responsible for prompting the release of wake-promoting neurotransmitters like dopamine that, at abnormal levels, may be associated with disrupted sleep, depression and anxiety [<xref rid="CR78" ref-type="bibr">78</xref>–<xref rid="CR81" ref-type="bibr">81</xref>]. Further, cannabis use during adolescent brain development – mediated by the ECS – is theorized to impact brain regions with high concentrations of ECS receptors and that play a role in sleep and the development of anxiety and depression (e.g., mesolimbic dopamine system, cerebellum; [<xref rid="CR82" ref-type="bibr">82</xref>, <xref rid="CR83" ref-type="bibr">83</xref>]). Collectively, while direct links between cannabis use, sleep, depression, and anxiety have been investigated, there have been few attempts to synthesize this evidence into a holistic model.</p><p id="Par16">Contemporary society’s interest in the therapeutic potential of cannabis for sleep necessitates a deeper understanding of how the two are related, including notable factors that may impact these relations. Recent reviews and meta-analyses have focused on cannabis and sleep generally [<xref rid="CR84" ref-type="bibr">84</xref>–<xref rid="CR86" ref-type="bibr">86</xref>], among specific populations (i.e., young adults [<xref rid="CR87" ref-type="bibr">87</xref>]; cancer patients [<xref rid="CR88" ref-type="bibr">88</xref>]), and as a treatment for sleep and anxiety disorders [<xref rid="CR89" ref-type="bibr">89</xref>–<xref rid="CR92" ref-type="bibr">92</xref>]. Yet, notable literature gaps remain, including how the presence of anxiety and depression impacts bidirectional associations between cannabis and sleep. As such, the overarching aims of this scoping review are to: (1) evaluate the recent empirical evidence on the interrelations between cannabis use, sleep, and anxiety and/or depression; (2) examine the different methodological approaches used in recent studies to investigate this topic, and; (3) identify future directions that can address salient knowledge gaps.</p></sec></sec><sec id="Sec5" disp-level="1"><title>Methods</title><p id="Par17">The present scoping review followed an established five-stage framework [<xref rid="CR93" ref-type="bibr">93</xref>] including: (1) Formulating the research question; (2) Identifying relevant studies; (3) Study selection; (4) Data charting, and; (5) Collating, Summarizing and Reporting the Results.</p><p id="Par18">
<italic>Stage 1: Research Question.</italic> This scoping review aimed to answer the following research question: What is the recent empirical evidence demonstrating how – or to what extent – depression and anxiety impact the bidirectional associations between cannabis and sleep? The present review chose to focus on studies examining THC because it is the most commonly used and commercially available cannabinoid. Likewise, findings focused on THC have the most relevant public health and policy implications due to its well-documented associations with adverse outcomes (e.g., CUD, psychiatric disorders [<xref rid="CR94" ref-type="bibr">94</xref>, <xref rid="CR95" ref-type="bibr">95</xref>]). </p><p id="Par19"><italic>Stage 2: Identifying studies</italic>. Included studies focused on the intersection of cannabis, sleep, and depression or anxiety measured across various time periods (e.g., current, lifetime) and level of analysis (e.g., day- or person-level). We considered studies that measured: (1) cannabis across multiple domains (e.g., use frequency, quantity, problems, CUD symptoms, product preferences, and sleep-related use motives); (2) a broad range of sleep phenotypes including disturbances (e.g., sleep quality) and disorders (e.g., insomnia), dimensions of sleep health (e.g., sleep timing and duration), and chronobiology (e.g., circadian rhythms), and; (3) negative affective states that encompassed self-reports of depression and/or anxiety, major depression or anxiety disorder diagnoses, or varying levels of depression and/or anxiety symptom severity.</p><p id="Par20">In Google Scholar and across the PubMed database, we searched peer-reviewed studies published from 2019 to 2024, written in English, that enrolled human participants. Relevant search terms included: “cannabis” OR “marijuana” OR “cannabinoid” OR “THC” AND “sleep” OR “insomnia” OR “sleep disorder” OR “polysomnography” OR “actigraphy” OR “circadian rhythm” OR “chronotype” AND “anxiety” OR “depression” with filters including “Species – Humans”. Reference lists from prior literature reviews and meta-analyses mentioned above were also hand-searched, resulting in 91 articles.</p><p id="Par21">
<italic>Stage 3: Study Selection.</italic> Study eligibility involved a two-step process determined by hand-screening the 91 articles identified in Stage 2. First, studies must have reported results from at least one statistical model testing associations between sleep and cannabis products with THC. Studies focused exclusively on sleep and cannabinoids other than THC (e.g., cannabidiol [CBD], cannabigerol [CBG]) were excluded. Second, studies were required to meet at least one of the following criteria: (a) enrolled participants based on depression and/or anxiety symptoms or diagnoses; (b) tested mediational pathways among cannabis, sleep, and anxiety or depression, or; (c) compared differences in sleep and/or cannabis use across groups based on depression/anxiety status, or varying levels of anxiety and/or depression within a single group. In total, 20 articles were included. Of the 71 excluded studies, <italic>n</italic> = 33 examined effects among cannabis, sleep, and depression/anxiety separately, <italic>n</italic> = 14 did not include a formal measure of depression and/or anxiety, <italic>n</italic> = 9 focused exclusively on cannabinoids other than THC (e.g. [<xref rid="CR96" ref-type="bibr">96</xref>]), , <italic>n</italic> = 7 only reported on depression and/or descriptively, <italic>n</italic> = 5 sleep and/or cannabis use across groups based on depression/anxiety status, or varying levels of anxiety and/or depression within a single group, and <italic>n</italic> = 3 collected data on various reasons for using medical cannabis.</p><p id="Par22"><italic>Stage 4: Data Charting.</italic> The authors reviewed all articles satisfying inclusion criteria and documented key study procedures, results, and other relevant information in a data charting form. Most studies recruited adults based on depression and/or anxiety symptoms or diagnoses to examine cannabis’ effect on self-reported sleep quality.</p><p id="Par23"><italic>Stage 5: Collating</italic>,<italic> Summarizing and Reporting the Results.</italic> Primary results were collated to provide a narrative summary of the recent empirical literature focused on the intersection of cannabis, sleep, and anxiety and depression. Accordingly, results were grouped thematically by study sample (i.e., depression and/or anxiety as an eligibility criteria). Within each group, data were subsequently organized by study design (i.e., cross-sectional or prospective).</p></sec><sec id="Sec6" disp-level="1"><title>Results</title><p id="Par24">Twenty articles were included that reported on either the effects of cannabis on sleep among individuals with depression and/or anxiety symptoms or disorder diagnoses (<italic>n</italic> = 11), or moderation (<italic>n</italic> = 6) or mediational pathways (<italic>n</italic> = 3) among cannabis use, sleep, and depression and/or anxiety. Half of the studies (<italic>n</italic> = 10) included persons across the lifespan, whereas fewer studies included exclusively young adults (i.e., 18–30 years of age; <italic>n</italic> = 4) or middle age and older adults (i.e., 31 + years of age; <italic>n</italic> = 5), and only one study included adolescents younger than 18 years of age [<xref rid="CR97" ref-type="bibr">97</xref>]. Only one study included both self-report and objective sleep measures. Of studies exclusively using self-report sleep measures, most (<italic>n</italic> = 12) used validated measures (e.g., Pittsburgh Sleep Quality Index [PSQI] [<xref rid="CR98" ref-type="bibr">98</xref>]; Insomnia Severity Index [ISI; [<xref rid="CR99" ref-type="bibr">99</xref>]), whereas six included one or more single-item questions. Most studies had prospective designs (<italic>n</italic> = 13), but few (<italic>n</italic> = 3) tested bidirectional associations between sleep and cannabis use. Table <xref rid="Tab2" ref-type="table">2</xref> includes detailed methodological information and sample descriptives for each study. Table <xref rid="Tab3" ref-type="table">3</xref> includes brief summaries of study results organized by sample, methodology, and direction of effects.</p><table-wrap id="Tab2" position="float"><?disp-level 2?><label>Table 2</label><caption><p>Studies included in the present scoping review</p></caption><table frame="hsides" rules="groups"><thead><tr><th align="left" colspan="1" rowspan="1">Author (year)</th><th align="left" colspan="1" rowspan="1">Sample description (<italic>n</italic>)</th><th align="left" colspan="1" rowspan="1">Age range<break/>(in years)<sup>a</sup></th><th align="left" colspan="1" rowspan="1">Sex<break/>(% Male)</th><th align="left" colspan="1" rowspan="1">Design</th><th align="left" colspan="1" rowspan="1">Sleep Variable(s)</th><th align="left" colspan="1" rowspan="1">Cannabis Measure(s)</th><th align="left" colspan="1" rowspan="1">Depression/Anxiety Measure(s)</th></tr></thead><tbody><tr><td align="left" colspan="1" rowspan="1">Bapir et al. (2023) [<xref rid="CR113" ref-type="bibr">113</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with chronic pain only (<italic>n</italic> = 543) or with comorbid anxiety (<italic>n</italic> = 711)</td><td align="left" colspan="1" rowspan="1"><p>Anxiety group:</p><p>44.8 (14.0)</p><p>No anxiety group:</p><p>47.0 (14.9)</p></td><td align="left" colspan="1" rowspan="1">54.1</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Past-week sleep quality (SQS)</td><td align="left" colspan="1" rowspan="1">Use of CBMPs</td><td align="left" colspan="1" rowspan="1"><p>GAD-7</p><p>EQ-5D-5L</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Barbotin et al. (2023) [<xref rid="CR107" ref-type="bibr">107</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with a past-year major depressive episode (<italic>n</italic> = 2,864)</td><td align="left" colspan="1" rowspan="1">18+</td><td align="left" colspan="1" rowspan="1">not listed</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Lifetime sleep complaints (3 items assessing trouble falling asleep, early morning awakening, hypersomnia)</td><td align="left" colspan="1" rowspan="1">AUDADIS-IV CUD</td><td align="left" colspan="1" rowspan="1">AUDADIS-IV mood &amp; anxiety disorders</td></tr><tr><td align="left" colspan="1" rowspan="1">Berey et al. (2024) [<xref rid="CR97" ref-type="bibr">97</xref>]</td><td align="left" colspan="1" rowspan="1">Youth interested in reducing their cannabis use (<italic>n</italic> = 86)</td><td align="left" colspan="1" rowspan="1">19.80 (2.12), 15–24</td><td align="left" colspan="1" rowspan="1">41.2</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Self-reported prior-night trouble sleeping (single item)</td><td align="left" colspan="1" rowspan="1"><p>Any use (y/n)</p><p>Quantity (grams)</p><p>Impaired control (y/n)</p></td><td align="left" colspan="1" rowspan="1">Self-reported negative affect (3 single-items)</td></tr><tr><td align="left" colspan="1" rowspan="1">Bidwell et al. (2024) [<xref rid="CR101" ref-type="bibr">101</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with anxiety (<italic>n</italic> = 347)</td><td align="left" colspan="1" rowspan="1">33.19 (13.24), 21–70</td><td align="left" colspan="1" rowspan="1">36.5</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Self-reported prior-night sleep quality (single-item)</td><td align="left" colspan="1" rowspan="1">Any use (y/n)</td><td align="left" colspan="1" rowspan="1"><p>GAD-7</p><p>DASS-21</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Coelho et al. (2023) [<xref rid="CR110" ref-type="bibr">110</xref>]</td><td align="left" colspan="1" rowspan="1">College students (<italic>n</italic> = 14,787)</td><td align="left" colspan="1" rowspan="1">20.4 (2.3), 18–30</td><td align="left" colspan="1" rowspan="1">24.5</td><td align="left" colspan="1" rowspan="1">Cross-sectional</td><td align="left" colspan="1" rowspan="1">Self-reported past 3-month sleep complaints (4 single-items)</td><td align="left" colspan="1" rowspan="1">Past-year frequency (single-item)</td><td align="left" colspan="1" rowspan="1">Self-reported lifetime depression/anxiety diagnosis (single item)</td></tr><tr><td align="left" colspan="1" rowspan="1">Dokkedal-Silva et al. (2021) [<xref rid="CR111" ref-type="bibr">111</xref>]</td><td align="left" colspan="1" rowspan="1">Adults living in Brazil (<italic>n</italic> = 793)</td><td align="left" colspan="1" rowspan="1">42.41 (14.33), 20–80</td><td align="left" colspan="1" rowspan="1">57.0</td><td align="left" colspan="1" rowspan="1">Cross-sectional</td><td align="left" colspan="1" rowspan="1">PSQI, ISI, PSG</td><td align="left" colspan="1" rowspan="1">ASSIST</td><td align="left" colspan="1" rowspan="1"><p>BAI</p><p>BDI</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Ergisi et al. (2022) [<xref rid="CR103" ref-type="bibr">103</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with DSM-5 general anxiety disorder (<italic>n</italic> = 67)</td><td align="left" colspan="1" rowspan="1">37.42 (13.01)</td><td align="left" colspan="1" rowspan="1">67.2</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Past-week sleep quality (SQS)</td><td align="left" colspan="1" rowspan="1">Use of CBMPs</td><td align="left" colspan="1" rowspan="1"><p>GAD-7</p><p>EQ-5D-5L</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Kuhathasan et al. (2022) [<xref rid="CR108" ref-type="bibr">108</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with insomnia symptoms and depression (<italic>n</italic> = 100), anxiety (<italic>n</italic> = 463), or comorbid depression and anxiety (<italic>n</italic> = 114)</td><td align="left" colspan="1" rowspan="1"><p>Depression:</p><p>30.93 (10.07), 18–62</p><p>Anxiety:</p><p>31.42 (8.91), 18–71</p><p>Comorbid:</p><p>33.98 (10.70), 18–62</p></td><td align="left" colspan="1" rowspan="1">44.5</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Self-reported insomnia symptoms</td><td align="left" colspan="1" rowspan="1">Self-reported product formulation and chemotype</td><td align="left" colspan="1" rowspan="1">Self-reported depression and/or anxiety</td></tr><tr><td align="left" colspan="1" rowspan="1">Livingston et al. (2023) [<xref rid="CR116" ref-type="bibr">116</xref>]</td><td align="left" colspan="1" rowspan="1">College students with past-month cannabis use (<italic>n</italic> = 1,453)</td><td align="left" colspan="1" rowspan="1">19.61 (2.55)</td><td align="left" colspan="1" rowspan="1">29.8</td><td align="left" colspan="1" rowspan="1">Cross-sectional</td><td align="left" colspan="1" rowspan="1">Sleep motives (CMMQ)</td><td align="left" colspan="1" rowspan="1"><p>Use frequency (MUG)</p><p>CUDIT</p><p>B-MACQ</p></td><td align="left" colspan="1" rowspan="1">DSM XC</td></tr><tr><td align="left" colspan="1" rowspan="1">Mangoo et al. (2023) [<xref rid="CR106" ref-type="bibr">106</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with a primary depression diagnosis (<italic>n</italic> = 129)</td><td align="left" colspan="1" rowspan="1">35.6 (11.1)</td><td align="left" colspan="1" rowspan="1">73.6</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Past-week sleep quality (SQS)</td><td align="left" colspan="1" rowspan="1">Use of CBMPs</td><td align="left" colspan="1" rowspan="1"><p>GAD-7</p><p>EQ-5D-5L</p><p>PHQ-9</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Martin et al. (2021) [<xref rid="CR100" ref-type="bibr">100</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with depression or anxiety who used (<italic>n</italic> = 368) or did not use (<italic>n</italic> = 170) medicinal cannabis</td><td align="left" colspan="1" rowspan="1">46 (13)</td><td align="left" colspan="1" rowspan="1">20.6</td><td align="left" colspan="1" rowspan="1">Cross-sectional</td><td align="left" colspan="1" rowspan="1">PSQI global score</td><td align="left" colspan="1" rowspan="1">Self-reported product type, chemotype, dosing regimen, route of administration</td><td align="left" colspan="1" rowspan="1">HADS</td></tr><tr><td align="left" colspan="1" rowspan="1">Montebello et al. (2022) [<xref rid="CR114" ref-type="bibr">114</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with ICD-10 cannabis dependence (<italic>n</italic> = 128)</td><td align="left" colspan="1" rowspan="1">35.0 (10.9), 18–65</td><td align="left" colspan="1" rowspan="1">76.6</td><td align="left" colspan="1" rowspan="1">RCT</td><td align="left" colspan="1" rowspan="1">ISI total score</td><td align="left" colspan="1" rowspan="1"><p>Past-month frequency (TLFB)</p><p>Medication condition</p></td><td align="left" colspan="1" rowspan="1">DASS-21</td></tr><tr><td align="left" colspan="1" rowspan="1">Murphy et al. (2024) [<xref rid="CR104" ref-type="bibr">104</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with anxiety classified into impaired (<italic>n</italic> = 156) or not-impaired (<italic>n</italic> = 146) sleep cohorts</td><td align="left" colspan="1" rowspan="1">38.06 (11.7)</td><td align="left" colspan="1" rowspan="1">69.5</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Past-week sleep quality (SQS)</td><td align="left" colspan="1" rowspan="1">Use of CBMPs</td><td align="left" colspan="1" rowspan="1"><p>GAD-7</p><p>EQ-5D-5L</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Rifkin-Zybutz et al. (2023) [<xref rid="CR105" ref-type="bibr">105</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with a general anxiety disorder diagnosis (<italic>n</italic> = 302)</td><td align="left" colspan="1" rowspan="1">37.0 (11.5)</td><td align="left" colspan="1" rowspan="1">68.6</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Past-week sleep quality (SQS)</td><td align="left" colspan="1" rowspan="1">Use of CBMPs</td><td align="left" colspan="1" rowspan="1"><p>GAD-7</p><p>EQ-5D-5L</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Sznitman et al. (2024) [<xref rid="CR102" ref-type="bibr">102</xref>]</td><td align="left" colspan="1" rowspan="1">Adults using cannabis for anxiety relief (<italic>n</italic> = 347)</td><td align="left" colspan="1" rowspan="1">33.15 (13.22), 21–70</td><td align="left" colspan="1" rowspan="1">36.3</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Self-reported prior-night sleep quality (single-item)</td><td align="left" colspan="1" rowspan="1">Any use (y/n)</td><td align="left" colspan="1" rowspan="1">DASS-21 Anxiety subscale</td></tr><tr><td align="left" colspan="1" rowspan="1">Tervo-Clemmens et al. (2023) [<xref rid="CR109" ref-type="bibr">109</xref>]</td><td align="left" colspan="1" rowspan="1">Adults seeking cannabis for insomnia, pain, or anxiety / depressive symptoms (<italic>n</italic> = 181)</td><td align="left" colspan="1" rowspan="1"><p>MCC Group:</p><p>38.26 (14.31), 18–65</p><p>WC Group:</p><p>36.69 (14.56), 18–65</p></td><td align="left" colspan="1" rowspan="1">34.4</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Self-reported prior-night sleep quality (single-item)</td><td align="left" colspan="1" rowspan="1"><p>Any use (y/n)</p><p>No. sessions</p></td><td align="left" colspan="1" rowspan="1">Self-reported depression (single item)</td></tr><tr><td align="left" colspan="1" rowspan="1">Walsh et al. (2024) [<xref rid="CR115" ref-type="bibr">115</xref>]</td><td align="left" colspan="1" rowspan="1">Young adults from Southern California (<italic>n</italic> = 1926)</td><td align="left" colspan="1" rowspan="1">21, 20–23</td><td align="left" colspan="1" rowspan="1">39.1</td><td align="left" colspan="1" rowspan="1">Prospective</td><td align="left" colspan="1" rowspan="1">Past-month sleep problems (JSS)</td><td align="left" colspan="1" rowspan="1">Past-month and lifetime cannabis use frequency exposure</td><td align="left" colspan="1" rowspan="1"><p>GAD-7</p><p>CES-D-10</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Winiger et al. (2021) [<xref rid="CR34" ref-type="bibr">34</xref>]</td><td align="left" colspan="1" rowspan="1">Adults with anxiety and lifetime cannabis use (<italic>n</italic> = 152)</td><td align="left" colspan="1" rowspan="1">31.45 (12.96), 21–70</td><td align="left" colspan="1" rowspan="1">31.7</td><td align="left" colspan="1" rowspan="1">Cross-sectional</td><td align="left" colspan="1" rowspan="1">PSQI</td><td align="left" colspan="1" rowspan="1"><p>Past 14-day frequency (TLFB)</p><p>Self-reported THC and CBD% (2 single-items)</p><p>Cannabis-related sleep expectancies</p></td><td align="left" colspan="1" rowspan="1">DASS-21</td></tr><tr><td align="left" colspan="1" rowspan="1">Yau et al. (2019) [<xref rid="CR112" ref-type="bibr">112</xref>]</td><td align="left" colspan="1" rowspan="1">Adults who used cannabis medicinally (<italic>n</italic> = 100)</td><td align="left" colspan="1" rowspan="1"><p>18–30 (59%)</p><p>31–45 (21%)</p><p>46+ (20%)</p></td><td align="left" colspan="1" rowspan="1">68</td><td align="left" colspan="1" rowspan="1">Cross-sectional</td><td align="left" colspan="1" rowspan="1">PROMIS Sleep Disturbance Scale</td><td align="left" colspan="1" rowspan="1">Self-reported age of first use, conditions/ symptoms for medical use, preferred formulation and cannabinoid content, frequency, quantity, and time of day, negative effects</td><td align="left" colspan="1" rowspan="1"><p>BDI</p><p>PHQ-15</p><p>MINI</p></td></tr><tr><td align="left" colspan="1" rowspan="1">Yurasek et al. (2020) [<xref rid="CR117" ref-type="bibr">117</xref>]</td><td align="left" colspan="1" rowspan="1">College students with past-month cannabis use (<italic>n</italic> = 267)</td><td align="left" colspan="1" rowspan="1">19.9 (1.4), 18–25</td><td align="left" colspan="1" rowspan="1">38.2</td><td align="left" colspan="1" rowspan="1">Cross-sectional</td><td align="left" colspan="1" rowspan="1">ISI total score</td><td align="left" colspan="1" rowspan="1"><p>Past-month frequency (single-item)</p><p>MCQ</p></td><td align="left" colspan="1" rowspan="1">DASS-21</td></tr></tbody></table><table-wrap-foot><fn id="_fn_p80"><p><italic>ASSIST</italic> Alcohol, Smoking and Substance Involvement Screening Test, <italic>AUDIT</italic> Alcohol Use Disorder and Associated Disabilities Interview Schedule for DSM-IV, <italic>BAI</italic> Beck Anxiety Inventor, <italic>BDI</italic> Beck Depression Inventory, <italic>B-MACQ</italic> Brief-Marijuana Consequences Questionnaire, <italic>CBD</italic> Cannabidiol, <italic>CBMP</italic> Cannabis-Based Medicinal Product, <italic>CES-D-10</italic> Center for Epidemiologic Studies Depression Scale, <italic>CMMQ</italic> Comprehensive Marijuana Motives Questionnaire, <italic>CUD</italic> Cannabis Use Disorder, <italic>CUDIT</italic> Cannabis Use Disorder Identification Test, <italic>DASS</italic> Depression, Anxiety and Stress Scale, <italic>DSM XC</italic> DSM-5 Level 1 Cross-Cutting Symptom Measure–Adult, <italic>DSM</italic> Diagnostic and Statistical Manual of Mental Disorders, <italic>EQ-5D-5 L</italic> EuroQol-5 Dimensions-5 Levels, <italic>GAD-7</italic> Generalized Anxiety Disorder 7-item, <italic>HADS</italic> Hospital Anxiety and Depression Scale, <italic>ICD-10</italic> International Classification of Diseases, Tenth Revision, <italic>ISI</italic> Insomnia Severity Index, <italic>JSS</italic> Jenkins Sleep Score, <italic>MCC</italic> Medical Cannabis Card, <italic>MCQ</italic> Marijuana Consequences Questionnaire, <italic>MINI</italic> Mini-International Neuropsychiatric Interview, <italic>MUG</italic> Marijuana Use Grid, <italic>PHQ</italic> Patient Health Questionnaire, <italic>PROMIS</italic> Patient-Reported Outcomes Measurement Information System, <italic>PSG</italic> Polysomnography, <italic>PSQI</italic> Pittsburgh Sleep Quality Index, <italic>SQS</italic> Sleep Quality Scale, <italic>THC</italic> Δ<sup>9</sup>-tetrahydrocannabinol, <italic>TLFB</italic> Timeline Follow-Back, <italic>WC</italic> Waitlist Control</p><p><sup>a</sup>sample(s) mean (sd), range (if provided), otherwise ns listed for each age category</p></fn></table-wrap-foot></table-wrap><table-wrap id="Tab3" position="float"><?disp-level 2?><label>Table 3</label><caption><p>Bidirectional associations between cannabis and sleep, by sample and methodology</p></caption><table frame="hsides" rules="groups"><thead><tr><th align="left" colspan="2" rowspan="1">Samples recruited based on depression and/or anxiety symptoms or diagnosis</th></tr><tr><th align="left" colspan="2" rowspan="1">Cannabis → Sleep</th></tr><tr><th align="left" colspan="1" rowspan="1">
<italic><underline>Cross-sectional</underline></italic>
</th><th align="left" colspan="1" rowspan="1">
<italic><underline>Prospective</underline></italic>
</th></tr></thead><tbody><tr><td align="left" colspan="1" rowspan="1">● Better self-reported sleep quality in adults who used medical CB vs. those who did not (Martin et al. 2021) [<xref rid="CR100" ref-type="bibr">100</xref>]</td><td align="left" colspan="1" rowspan="1">● Use of CBMPs associated with better subjective sleep quality in adult patients with anxiety (Ergisi et al. 2022; Murphy et al. 2024; Rifkin-Zybutz et al. 2023) [<xref rid="CR103" ref-type="bibr">103</xref>–<xref rid="CR105" ref-type="bibr">105</xref>] or depressive (Mangoo et al. 2022) [<xref rid="CR106" ref-type="bibr">106</xref>] disorders</td></tr><tr><td align="left" colspan="1" rowspan="1">● Current CB use and more frequent CB edible use associated with poorer self-reported sleep quality and efficiency, and shorter sleep duration (Winiger et al. 2021) [<xref rid="CR34" ref-type="bibr">34</xref>]</td><td align="left" colspan="1" rowspan="1">● CB use days associated with better subjective sleep quality (Bidwell et al. 2024; Sznitman et al. 2024; Tervo-Clemmens et al. 2023) [<xref rid="CR101" ref-type="bibr">101</xref>, <xref rid="CR102" ref-type="bibr">102</xref>, <xref rid="CR109" ref-type="bibr">109</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1">● CB edible days associated with better subjective sleep quality than CB flower days; CBD-dominant CB products associated with better subjective sleep quality ratings than THC-dominant and balanced THC/CBD CB products (Bidwell et al. 2024) [<xref rid="CR101" ref-type="bibr">101</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1">● CB use improved self-reported insomnia symptoms (Kuhathasan et al. 2022) [<xref rid="CR108" ref-type="bibr">108</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1">● CB flower and oil products most effective for treating insomnia Sx in individuals with depression; All CB products equally effective for treating insomnia Sx in individuals with anxiety; all CB strains equally effective for treating insomnia Sx in individuals with depression or anxiety (Kuhathasan et al. 2022) [<xref rid="CR108" ref-type="bibr">108</xref>]</td></tr><tr><td align="left" colspan="2" rowspan="1">Sleep → Cannabis</td></tr><tr><td align="left" colspan="1" rowspan="1">
<italic><underline>Cross-sectional</underline></italic>
</td><td align="left" colspan="1" rowspan="1">
<italic><underline>Prospective</underline></italic>
</td></tr><tr><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1">● Hypersomnia increased odds of future CUD (Barbotin et al. 2022) [<xref rid="CR107" ref-type="bibr">107</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1">● Subjective sleep quality not associated with next-dayCB use (Bidwell et al. 2024; Sznitman et al. 2024) [<xref rid="CR101" ref-type="bibr">101</xref>,<xref rid="CR102" ref-type="bibr">102</xref>]</td></tr></tbody></table><table frame="hsides" rules="groups"><thead><tr><th align="left" colspan="2" rowspan="1">Samples not recruited based on depression and/or anxiety symptoms or diagnosis</th></tr><tr><th align="left" colspan="2" rowspan="1">Cannabis → Sleep</th></tr><tr><th align="left" colspan="1" rowspan="1">
<italic><underline>Cross-sectional</underline></italic>
</th><th align="left" colspan="1" rowspan="1">
<italic><underline>Prospective</underline></italic>
</th></tr></thead><tbody><tr><td align="left" colspan="1" rowspan="1">● CB use increased odds of sleep problems overall; relations between CB use and specific sleep problems differed across YA with or without depression or anxiety (Coelho et al. 2023) [<xref rid="CR110" ref-type="bibr">110</xref>]</td><td align="left" colspan="1" rowspan="1">● Greater CB use frequency associated with less sleep problems in YA with baseline depression or anxiety but more sleep problems in YA without baseline depression or anxiety (Walsh et al. 2024) [<xref rid="CR115" ref-type="bibr">115</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1">● CB-related problems indirectly related to insomnia severity via negative mood (Yurasek et al. 2020) [<xref rid="CR117" ref-type="bibr">117</xref>]</td><td align="left" colspan="1" rowspan="1">● Use of CBMPs associated with better subjective sleep quality in adult chronic pain patients with and without anxiety; CBMPs more effective for patients with moderate-severe anxiety vs. no anxiety (Bapir et al.2023) [<xref rid="CR113" ref-type="bibr">113</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1">● Using medical CB to treat insomnia did not differ among adults w/ or w/o a lifetime anxiety or depression diagnosis (Yau et al. 2019) [<xref rid="CR112" ref-type="bibr">112</xref>]</td><td align="left" colspan="1" rowspan="1">● CB use associated with higher ISI scores during and after Tx among persons with CUD (Montebello et al. 2022) [<xref rid="CR114" ref-type="bibr">114</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1">Sleep → Cannabis (Cross-sectional)</td><td align="left" colspan="1" rowspan="1">Sleep → Cannabis (Prospective)</td></tr><tr><td align="left" colspan="1" rowspan="1">● Insomnia severity indirectly associated with CB-related problems via negative mood (Yurasek et al. 2020) [<xref rid="CR117" ref-type="bibr">117</xref>]</td><td align="left" colspan="1" rowspan="1">● Youth with more trouble sleeping reported higher levels of negative affect, but nights with more trouble sleeping reduced odds of next-day CB use (Berey et al. 2024) [<xref rid="CR97" ref-type="bibr">97</xref>]</td></tr><tr><td align="left" colspan="1" rowspan="1">● Subjective sleep quality and PSG-derived sleep architecture, or their interaction with depression/anxiety symptoms, not associated with risky CB use (Dokkedal-Silva et al. 2021) [<xref rid="CR111" ref-type="bibr">111</xref>]</td><td align="left" colspan="1" rowspan="1"/></tr><tr><td align="left" colspan="1" rowspan="1">● Depression and anxiety symptoms indirectly related to CB use frequency, problems, and CUD risk via cannabis-related sleep motives (Livingston et al. 2023) [<xref rid="CR116" ref-type="bibr">116</xref>]</td><td align="left" colspan="1" rowspan="1"/></tr></tbody></table><table-wrap-foot><fn id="_fn_p84"><p><italic>CB</italic> Cannabis, <italic>CBD</italic> Cannabidiol, <italic>CBMP</italic> Cannabis-based medicinal product, <italic>CUD</italic> Cannabis usedisorder, <italic>PSG</italic> Polysomnography, <italic>Sx</italic> Symptoms, <italic>Tx</italic> Treatment, <italic>YA</italic> Young adults</p></fn></table-wrap-foot></table-wrap><sec id="Sec7" disp-level="2"><title>Evidence from Samples Recruited Based on Depression and/or Anxiety Symptoms or Diagnosis</title><p id="Par27">Two cross-sectional studies tested effects of cannabis on sleep in adult samples with at least mild anxiety [<xref rid="CR34" ref-type="bibr">34</xref>] or who had either depressive or anxiety disorders [<xref rid="CR100" ref-type="bibr">100</xref>]. Nine prospective studies enrolled adults based on anxiety (<italic>n</italic> = 5; [<xref rid="CR101" ref-type="bibr">101</xref>–<xref rid="CR105" ref-type="bibr">105</xref>]) or depressive (<italic>n</italic> = 2; [<xref rid="CR106" ref-type="bibr">106</xref>, <xref rid="CR107" ref-type="bibr">107</xref>]) symptoms or disorder, or both (<italic>n</italic> = 2 [<xref rid="CR108" ref-type="bibr">108</xref>, <xref rid="CR109" ref-type="bibr">109</xref>]). All but one [<xref rid="CR107" ref-type="bibr">107</xref>] study examined the effects of cannabis on sleep, with each providing evidence that cannabis improved various sleep phenotypes.</p></sec><sec id="Sec8" disp-level="2"><title>Cross-Sectional Findings</title><sec id="Sec9" disp-level="3"><title>Cannabis Use → Sleep</title><p id="Par28">One study compared baseline PSQI-measured sleep quality and disturbances among those who did or did not report medical cannabis use among a large sample of primarily middle-aged adults with self-identified anxiety or depressive disorders [<xref rid="CR100" ref-type="bibr">100</xref>]. Overall sample prevalence of anxiety (34%), depressive (15%), or both (51%) disorders did not differ across groups based on baseline cannabis use, but adults who used medical cannabis reported significantly lower past-month PSQI global scores (i.e., better sleep quality) than adults who did not use medical cannabis.</p><p id="Par29">Another study examined associations between cannabis use and self-reported sleep outcomes among adults from the community with at least mild anxiety, lifetime cannabis use, and who wanted to use cannabis to treat anxiety [<xref rid="CR34" ref-type="bibr">34</xref>]. More frequent use of cannabis edibles was associated with poorer sleep quality on the PSQI, controlling for age, alcohol use, current internalizing and stress symptoms, and gender. Current cannabis use and increased frequency of edibles was also associated with individual PSQI components: worse subjective sleep quality, worse subjective sleep efficiency, and shorter sleep duration. Yet, these associations did not remain significant when adjusting for the aforementioned covariates. With regard to cannabinoid profiles, THC concentration was not associated with PSQI scores, whereas greater CBD concentration was significantly associated with greater sleep efficiency and duration for older than younger adults, although similar to the other findings, the adjustments for covariates did not retain significance &lt; .05.</p><p id="Par30">Collectively, cross-sectional evidence linking cannabis to sleep was equivocal (e.g., better sleep quality [<xref rid="CR100" ref-type="bibr">100</xref>] but more disturbances to specific sleep phenotypes [<xref rid="CR34" ref-type="bibr">34</xref>]), although cannabis mode and cannabinoid profile may be relevant factors influencing these associations. Different study sample sociodemographic characteristics, measures used to quantify cannabis use, and depression and anxiety inclusion criteria likely also contributed to discrepant findings.</p></sec></sec><sec id="Sec10" disp-level="2"><title>Prospective Findings</title><sec id="Sec11" disp-level="3"><title>Cannabis Use → Sleep</title><p id="Par31">Several observational studies used secondary analysis from the United Kingdom Medical Cannabis Registry (UKMCR) to examine the direct effects of cannabis-based medical products (CBMP: i.e., prescribed medical flower or oil) on sleep. In three studies, middle-aged adults with a primary, secondary, or tertiary GAD diagnosis received CBMPs during an initial clinical assessment and reported on their past-week sleep quality at follow-ups up to one year later [<xref rid="CR103" ref-type="bibr">103</xref>–<xref rid="CR105" ref-type="bibr">105</xref>]. These studies consistently reported improvements in self-reported sleep quality, depression and/or anxiety at 1-, 3-, and 6- or 12-month follow-ups. Moreover, one of the studies examined whether cannabis’ efficacy varied based on participants’ baseline sleep quality (i.e., impaired vs. non-impaired based on an initial threshold score) [<xref rid="CR104" ref-type="bibr">104</xref>]. Compared to adults without impaired sleep, adults with impaired sleep were significantly more likely to report clinically meaningful improvements in GAD symptoms at 1- and 3-month follow-ups and in sleep quality at all time points. Lastly, compared to adults without impaired sleep, adults with impaired sleep also exhibited a greater mean improvement in anxiety and depression symptoms. In yet another secondary analysis of UKMCR data in middle-aged adults with a lifetime depression diagnosis, CBMPs demonstrated improvements in self-reported sleep quality, depression, and anxiety at 1-, 3-, and 6-month follow-ups [<xref rid="CR106" ref-type="bibr">106</xref>].</p><p id="Par32">Additional prospective research in populations not receiving medical recommendations for cannabis supported its therapeutic potential for sleep. Two secondary analyses used data from an ongoing daily diary study where adults with mild to moderate anxiety self-selected a specific cannabis formulation (i.e., flower, edible) at baseline and were then randomized to a specific cannabinoid profile group (i.e., THC or CBD dominant, balanced THC/CBD) within their chosen formulation. Afterwards, participants completed daily surveys and were able to purchase and use their assigned cannabis product <italic>ad libitum</italic> from a local dispensary over one month. In the first study, participants reported better subjective sleep quality on cannabis use only days compared to alcohol only days, alcohol and cannabis co-use days, and non-use days [<xref rid="CR102" ref-type="bibr">102</xref>]. Further, moderation analyses indicated that cannabis effects on day-level sleep quality were stronger for participants with more frequent cannabis use at baseline. However, main effects of cannabis formulation and cannabinoid profile group on subjective sleep quality were not statistically significant. In the second study, results indicated that cannabis use (vs. non-use) days were associated with better subjective sleep quality [<xref rid="CR101" ref-type="bibr">101</xref>]. Further, the positive association between cannabis use and day-level sleep quality was stronger among those with higher baseline depression.</p><p id="Par33">In another observational study, adults ages 18–71 with either depression, anxiety, or both used a medical tracking app to monitor insomnia symptoms before and after using cannabis [<xref rid="CR108" ref-type="bibr">108</xref>]. In this study, the subsample with depression reported that cannabis effectively treated insomnia for most ages (i.e., with the exception of those over 45), that cannabis flower and oil were particularly effective relative to other products, and that all strains (i.e., CBD dominant, indica, sativa, and hybrid) were effective for self-reported insomnia. Results were even more all-encompassing for the subsample with anxiety, in that all strain and all products were perceived as effective. Finally, in the subsample with both anxiety and depression, there were beneficial effects for all age groups and for all strains and products. Overall, results suggest that individuals with both depression and anxiety report high efficacy of cannabis for self-reported symptoms of insomnia, but particularly among those with anxiety.</p><p id="Par34">In a final daily diary study with adults ages 18–65 seeking cannabis for insomnia, pain, or anxiety/depression symptoms, participants were randomized to either obtain a medical card at the time of randomization or to a waitlist control condition (i.e., wait 12 weeks before obtaining card) [<xref rid="CR109" ref-type="bibr">109</xref>]. Those who obtained a medical cannabis card at randomization showed improvements in sleep quality following randomization over time. Further, days where cannabis was used were associated with improved self-report sleep quality in the medical card group. No effects on depression were found.</p><p id="Par35">Collectively, results provided consistent evidence that cannabis use is linked to improvements in self-reported sleep phenotypes acutely and over longer time periods at the between- and within-person level. However, data from randomized controlled trials that include placebo conditions are needed to further substantiate results from these observational studies. Importantly, cannabis formulation may have differential effects on sleep based on participants perceptions that cannabis edibles and CBD-dominant products optimally improved their subjective sleep quality.</p></sec><sec id="Sec12" disp-level="3"><title>Sleep → Cannabis Use</title><p id="Par36">Results were equivocal among the three studies that prospectively examined effects of sleep on cannabis use [<xref rid="CR101" ref-type="bibr">101</xref>, <xref rid="CR102" ref-type="bibr">102</xref>, <xref rid="CR107" ref-type="bibr">107</xref>]. In two daily diary studies, prior-night sleep quality was not associated with next-day cannabis use among adults with mild to moderate anxiety who were randomized to various cannabis products [<xref rid="CR101" ref-type="bibr">101</xref>, <xref rid="CR102" ref-type="bibr">102</xref>]. Another study examined associations between sleep complaints (i.e., trouble falling asleep, early morning awakenings, and hypersomnia) and CUD in adults with a past-year major depressive episode using data from Waves 1 and 2 of the National Epidemiologic Survey on Alcohol and Related Conditions (NESARC) [<xref rid="CR107" ref-type="bibr">107</xref>]. Baseline hypersomnia (i.e., Wave 1), but not trouble falling asleep or early morning awakening, increased odds of CUD three years later (i.e., Wave 2). Further, lifetime incidence rates for trouble falling asleep, early morning awakening, and hypersomnia were 67.6%, 43.3%, and 71.9%, respectively, among those who developed a CUD during the 3-year follow-up period.</p><p id="Par37">Collectively, results provided mixed evidence for sleep disruptions as a predictor of future cannabis use. While sleep quality may not be related to cannabis use at the day-level, other sleep disruptions may increase risk for CUD over time.</p></sec></sec><sec id="Sec14" disp-level="2"><title>Evidence From Samples Not Recruited Based on Depression and/or Anxiety Symptoms or Diagnosis</title><p id="Par38">Three cross-sectional [<xref rid="CR110" ref-type="bibr">110</xref>–<xref rid="CR112" ref-type="bibr">112</xref>] and three prospective [<xref rid="CR113" ref-type="bibr">113</xref>–<xref rid="CR115" ref-type="bibr">115</xref>] studies examined whether associations between cannabis and sleep were moderated by depressive and/or anxiety symptoms, whereas two cross-sectional [<xref rid="CR116" ref-type="bibr">116</xref>, <xref rid="CR117" ref-type="bibr">117</xref>] and one prospective [<xref rid="CR97" ref-type="bibr">97</xref>] studies tested mediational pathways linking cannabis, sleep, and depression and/or anxiety.</p></sec><sec id="Sec15" disp-level="2"><title>Cross-Sectional Findings</title><sec id="Sec16" disp-level="3"><title>Cannabis → Sleep</title><p id="Par39">Three studies tested moderation or mediation pathways linking cannabis to sleep. First, in a large sample (<italic>n</italic> = 14,787) of French college students, greater past-year cannabis use frequency was associated with greater odds of past 3-month self-reported sleep problems (e.g., difficulty falling asleep/staying asleep; daytime sleepiness; poor subjective sleep quality, and insufficient sleep durations) regardless of prior depression or anxiety diagnosis [<xref rid="CR110" ref-type="bibr">110</xref>]. However, among the subsample of participants with a history of depression or anxiety, those with daily cannabis use had higher odds of difficulty falling asleep/staying asleep, poor subjective sleep quality, and excessive daytime sleepiness than those reporting never/rarely using cannabis. In contrast, students <italic>without</italic> a history of depression or anxiety who reported daily cannabis use had higher odds of insufficient sleep durations than those reporting never/rarely using cannabis.</p><p id="Par40">A second study recruited adults who used medical cannabis from a community dispensary to examine mental health and psychiatric symptom severity [<xref rid="CR112" ref-type="bibr">112</xref>]. Participants most often reported using medical cannabis to treat anxiety (77%), insomnia (53%), and depression (47%). Exploratory analyses indicated that sleep disturbance ratings and the percentage of participants using medical cannabis to treat insomnia did not differ between those with or without a lifetime anxiety or depression diagnosis. Alternatively, participants with a lifetime anxiety diagnosis were more likely to report experiencing negative side-effects from cannabis than those without a lifetime anxiety diagnosis. The third study examined whether negative mood mediated the concurrent association between past-month cannabis-related problems and insomnia severity index (ISI) scores among undergraduate college students with current cannabis use [<xref rid="CR117" ref-type="bibr">117</xref>]. Results indicated that cannabis-related problems were positively associated with negative mood, which in turn, was positively associated with insomnia severity.</p><p id="Par41">Collectively, results provided mixed evidence for mediational and moderation pathways among cannabis use, depression and anxiety, and sleep. More frequent cannabis use may result in specific sleep disruptions for those with depression or anxiety, whereas depression and anxiety may be an underlying factor linking cannabis problems to insomnia severity for young adults.</p></sec><sec id="Sec17" disp-level="3"><title>Sleep → Cannabis Use</title><p id="Par42">In one large-scale study, adults completed a self-report battery consisting of depression, anxiety, substance use, and various sleep measures followed by overnight PSG [<xref rid="CR111" ref-type="bibr">111</xref>]. Structural equation models with subjective sleep quality (i.e., ISI, PSQI), sleep architecture (i.e., PSG-derived sleep staging, nighttime awakenings, total sleep time [TST], SOL, WASO), and psychiatric symptom (i.e., Beck Depression Index, Beck Anxiety Index) latent factors tested direct and interactive effects on risky cannabis use on the Alcohol, Smoking and Substance Involvement Screening Test (ASSIST; [<xref rid="CR118" ref-type="bibr">118</xref>]). Neither main effects of sleep and psychiatric symptoms, nor their interaction, were associated with cannabis ASSIST scores.</p><p id="Par43">In the aforementioned study with undergraduate college students, Yurasek and colleagues [<xref rid="CR117" ref-type="bibr">117</xref>] also tested whether negative mood mediated the cross-sectional association between insomnia and past-month cannabis-related problems. Insomnia severity was positively associated with negative mood, which in turn, was positively associated with cannabis-related problems. Notably, negative mood’s indirect effect was stronger in males than females. A third study tested whether sleep motives mediated the cross-sectional association between affective symptoms and various cannabis use indices in young adult college students with current (i.e., past-month) cannabis use [<xref rid="CR116" ref-type="bibr">116</xref>]. On average, the sample reported using cannabis for sleep almost half of the time. Further, depression and anxiety symptoms were positively associated with cannabis sleep motives, which in turn, was positively associated with cannabis use frequency, problems, and Cannabis Use Disorder Identification Test (CUDIT-R; [<xref rid="CR119" ref-type="bibr">119</xref>]) scores.</p><p id="Par44">Taken together, results from these studies provide evidence of the bidirectional nature between cannabis, <italic>self-reported</italic> sleep phenotypes, depression, and anxiety. For young adults, depression and anxiety may be an underlying factor linking insomnia severity to cannabis problems, or motivate the use of cannabis for sleep problems that imparts risk for negative cannabis outcomes.</p></sec></sec><sec id="Sec18" disp-level="2"><title>Prospective Findings</title><sec id="Sec19" disp-level="3"><title>Cannabis → Sleep</title><p id="Par45">In one secondary analysis from a prospective cohort study, young adults completed self-reports on past-month cannabis use, sleep problems, past two-week general anxiety symptoms, and past-week depressive symptoms at baseline and six months later [<xref rid="CR115" ref-type="bibr">115</xref>]. Associations between cannabis and sleep problems differed based on participants’ baseline mental health status. Specifically, more frequent cannabis use was associated with fewer sleep problems at follow-up among participants meeting baseline clinical thresholds for anxiety or depression (i.e., GAD-7 and CES-D-10 scores &gt; 10), but more sleep problems among participants without anxiety or depression. Further, more frequent cannabis use was associated with fewer six-month sleep problems when accounting for baseline sleep problems, but only among those who met clinical thresholds for anxiety or depression <italic>and</italic> reported sleep problems on 3 + days at baseline.</p><p id="Par46">Another secondary analysis used UKMCR data from adults whose primary indication for CBMP treatment was chronic pain and who were classified into no anxiety and anxiety cohorts using baseline GAD-7 scores [<xref rid="CR113" ref-type="bibr">113</xref>]. Improvements in subjective sleep quality from baseline were reported at 1-, 3-, and 6-month follow-up assessments regardless of anxiety cohort. However, patients with moderate or severe anxiety (i.e., GAD-7 scores <italic>≥</italic> 10) reported greater improvements from baseline in subjective sleep quality at 1- and 6-month follow-ups compared to patients in the no-anxiety cohort (i.e., GAD-7 scores &lt; 5).</p><p id="Par47">One randomized clinical trial (RCT) testing the effects of Nabiximols – a 1:1 THC: CBD extract – to reduce cannabis use in a sample with cannabis dependence examined secondary outcomes on sleep, depression, and anxiety [<xref rid="CR114" ref-type="bibr">114</xref>]. While illicit cannabis use (i.e., use other than Nabiximols) during the trial and follow-up periods was associated with higher ISI scores, it did not significantly increase the odds of exceeding ISI clinical cut-off scores. Further, among those who had moderate-severe ratings of depression or anxiety and insomnia at baseline, a decrease in both symptoms occurred across the trial.</p><p id="Par48">Collectively, study findings indicate that cannabis may improve subjective sleep quality among young adults or reduce sleep problems among primarily middle-aged adults with chronic pain, albeit with notable caveats. Further, cannabis use may exacerbate insomnia symptoms for individuals in cannabis use treatment.</p></sec><sec id="Sec20" disp-level="3"><title>Sleep → Cannabis Use</title><p id="Par49">One secondary analysis tested mechanisms linking sleep disruptions to cannabis use during the pre-randomization period of a combined pharmacotherapy and psychosocial RCT in youth and young adults who were interested in reducing their cannabis use [<xref rid="CR97" ref-type="bibr">97</xref>]. Participants completed daily morning reports of their prior day sleep and cannabis use, random reports measuring negative affect, and self-initiated reports each time they used cannabis for approximately one week. While youth with more trouble sleeping reported higher levels of negative affect, neither was associated with greater cannabis use during the pre-randomization period. Further, youth who reported more trouble sleeping the prior night had a lower the odds of using cannabis the next day.</p></sec></sec></sec><sec id="Sec21" disp-level="1"><title>Discussion</title><p id="Par50">Cannabis use for sleep has become increasingly prevalent in contemporary society, despite limited empirical evidence supporting its efficacy [<xref rid="CR19" ref-type="bibr">19</xref>]. Our understanding of how bidirectional cannabis-sleep effects manifest in individuals with depression and anxiety is lacking. The present review evaluated the recent empirical evidence focused on cannabis use, sleep, and anxiety and/or depression. Additionally, we investigated methodological approaches used in these recent studies to identify future directions that can advance cannabis and sleep research.</p><sec id="Sec22" disp-level="2"><title>Key Points on the Role of Depression and Anxiety When Evaluating the Association Between Cannabis Use and Sleep</title><p id="Par51">Overall, findings among individuals recruited based on depression and/or anxiety symptomatology consistently indicated that cannabis use is linked to improvements in subjective sleep quality and/or sleep disturbance cross-sectionally and longitudinally. Notably, there was some evidence to suggest that specific formulations and cannabinoid concentrations were perceived as more effective than others [<xref rid="CR101" ref-type="bibr">101</xref>, <xref rid="CR108" ref-type="bibr">108</xref>]. Further, almost all reviewed studies contained adult samples who were, on average, between 30 and 40 years of age. Thus, while certain cannabis products may improve subjective sleep quality for middle-aged adults experiencing depressive or anxiety symptoms, more research is needed among individuals spanning different developmental periods (e.g., adolescence or older adulthood), given well documented differences in sleep patterns across the lifespan [<xref rid="CR120" ref-type="bibr">120</xref>].</p><p id="Par52">Alternatively, studies that did not recruit individuals based on depression and/or anxiety symptomatology produced largely equivocal findings. That is, cannabis use was associated with sleep problems and insomnia severity in some studies [<xref rid="CR110" ref-type="bibr">110</xref>, <xref rid="CR114" ref-type="bibr">114</xref>, <xref rid="CR117" ref-type="bibr">117</xref>], improved subjective sleep quality and fewer sleep problems in other studies [<xref rid="CR113" ref-type="bibr">113</xref>, <xref rid="CR115" ref-type="bibr">115</xref>], or was not associated with sleep altogether [<xref rid="CR112" ref-type="bibr">112</xref>]. Key differences in sample sociodemographics and study methodologies likely contributed to inconsistent findings. For example, these studies implemented cross-sectional, prospective observational, and experimental designs with heterogenous samples spanning young adult college students [<xref rid="CR110" ref-type="bibr">110</xref>, <xref rid="CR115" ref-type="bibr">115</xref>, <xref rid="CR117" ref-type="bibr">117</xref>] to middle-aged and older adults [<xref rid="CR113" ref-type="bibr">113</xref>, <xref rid="CR114" ref-type="bibr">114</xref>], which make it difficult to draw conclusions about the complex associations between cannabis use, sleep, and depression and anxiety. Moreover, the majority of these studies did not use objective sleep methods.</p><p id="Par53">Far fewer studies in this review examined sleep as a predictor of cannabis use. However, inconsistent with prior research (e.g. [<xref rid="CR28" ref-type="bibr">28</xref>, <xref rid="CR31" ref-type="bibr">31</xref>, <xref rid="CR32" ref-type="bibr">32</xref>]), , results from studies included in the present review were largely equivocal regardless of whether individuals were enrolled based on depression and/or anxiety symptomatology. For example, the two studies linking sleep to cannabis-related problems and higher odds of future CUD focused on insomnia severity or self-reported hypersomnia [<xref rid="CR107" ref-type="bibr">107</xref>, <xref rid="CR117" ref-type="bibr">117</xref>], whereas studies that combined self-reported and objective sleep measures [<xref rid="CR111" ref-type="bibr">111</xref>] or measured day-level subjective sleep quality [<xref rid="CR101" ref-type="bibr">101</xref>, <xref rid="CR102" ref-type="bibr">102</xref>] did not find significant associations with cannabis use indices. In yet another study, more trouble sleeping was associated with a lower odds of next-day cannabis use [<xref rid="CR97" ref-type="bibr">97</xref>]. As such, more research to determine which sleep disruptions are most relevant to cannabis use and future negative outcomes is warranted.</p></sec><sec id="Sec23" disp-level="2"><title>Clinical and Public Health Implications</title><p id="Par54">When viewed collectively, study findings can inform future clinical practice and public health initiatives by providing insights about potential mechanisms linking cannabis to sleep and how depression and anxiety can moderate these associations. Specifically, elevated depression, anxiety, and stress may be more relevant to explaining why cannabis-related problems confer risk for sleep disorders like insomnia in young adult college students [<xref rid="CR117" ref-type="bibr">117</xref>] but less so for how sleep disruptions relate to cannabis use among adolescents. Likewise, adults who are physically dependent on cannabis and reduce their use may also experience reductions in depression, anxiety, and insomnia [<xref rid="CR114" ref-type="bibr">114</xref>]. Notably, findings from this review underscore the considerable nuance for how cannabis may impact sleep in individuals with anxiety or depression. For example, while cannabis may improve subjective sleep quality for individuals with higher levels of anxiety, daily use may actually exacerbate sleep disruptions [<xref rid="CR110" ref-type="bibr">110</xref>] or be less effective in individuals who report good sleep at baseline [<xref rid="CR115" ref-type="bibr">115</xref>]. Thus, clinicians should carefully consider a patient’s current severity of sleep disruptions – or lack thereof – when discussing cannabis use in the context of anxiety or depression and explain how cannabis may have diminishing returns as a sleep aid when used too frequently.</p></sec><sec id="Sec24" disp-level="2"><title>Recommendations to Advance Cannabis and Sleep Research</title><p id="Par55">Several key future research areas emerged after examining the methodologies used by the studies included in the present review. First, all but one study exclusively measured self-reported sleep outcomes – often subjective sleep quality – and many studies contained samples who were seeking cannabis use for sleep. Indeed, in many of the prospective studies included in this review, participants were either prescribed a CBMP or were randomized to a condition where they could purchase and use cannabis from a licensed dispensary for insomnia, depression, and/or anxiety. Given near universal perceptions that cannabis is an effective sleep aid [<xref rid="CR12" ref-type="bibr">12</xref>, <xref rid="CR16" ref-type="bibr">16</xref>, <xref rid="CR121" ref-type="bibr">121</xref>] coupled with the fact that in many studies participants were prescribed cannabis explicitly for their sleep (e.g. [<xref rid="CR103" ref-type="bibr">103</xref>, <xref rid="CR113" ref-type="bibr">113</xref>]), , expectancy effects (i.e., expectations for improved sleep in line with self-reported improvements) were likely to be strong in these samples. Thus, to adequately account for sleep-related cannabis expectancies, future research should use experimental placebo-controlled designs to separate effects (i.e., cannabis from expectancy) on sleep. Second, given the multifaceted nature of sleep, use of valid and reliable subjective and objective assessments are critical – and recommended [<xref rid="CR122" ref-type="bibr">122</xref>] – in mechanistic research studies. The importance of including both subjective and objective measures was also emphasized in two recent reviews on sleep and substance use disorders [<xref rid="CR123" ref-type="bibr">123</xref>, <xref rid="CR124" ref-type="bibr">124</xref>].</p><p id="Par56">Third, many of the studies included in this review contained samples with wide age ranges that may have confounded results given well-documented age-related changes in sleep patterns [<xref rid="CR120" ref-type="bibr">120</xref>], and only one study enrolled adolescents [<xref rid="CR97" ref-type="bibr">97</xref>]. Thus, more research is needed to ascertain relations among cannabis, sleep, depression and anxiety across unique developmental periods generally, and during adolescence specifically. For example, future research should carefully consider age-related eligibility criteria or implement study designs stratifying participants based on developmental stage. Fourth, while this review evaluated recent empirical literature focused on how depression and anxiety impact links between cannabis and sleep, there is clinical and theoretical value in examining how cannabis and sleep impact anxiety and depression. For example, in addition to improved subjective sleep quality, several studies using UKMCR data found that CBMPs concomitantly reduced depression and anxiety symptoms over time [<xref rid="CR103" ref-type="bibr">103</xref>–<xref rid="CR106" ref-type="bibr">106</xref>, <xref rid="CR113" ref-type="bibr">113</xref>]. Yet, it is unclear whether better subjective sleep quality led to fewer depression and anxiety symptoms or if the effects of CBPMs on these outcomes operated independently.</p><p id="Par57">Lastly, most studies in the present review measured cannabis use frequency/quantity or severity. Given psychometric concerns of existing cannabis quantity measures (e.g. [<xref rid="CR125" ref-type="bibr">125</xref>]), , and the emergence of myriad novel cannabis products with unique formulations and cannabinoid compositions, a critical next step is to examine how these factors impact sleep among individuals with varying levels of depression and anxiety. To this end, future research would benefit from measuring cannabis quantity based on standardized THC units that can be applied across all cannabis products [<xref rid="CR126" ref-type="bibr">126</xref>]. Indeed, more detailed assessments will provide added granularity given that the duration and intensity of subjective effects differ across both administration mode and dose [<xref rid="CR127" ref-type="bibr">127</xref>, <xref rid="CR128" ref-type="bibr">128</xref>].</p></sec></sec><sec id="Sec25" disp-level="1"><title>Conclusion</title><p id="Par58">As a growing cannabis and sleep literature emerges, recent work demonstrates the importance of considering how depression and anxiety can impact the bidirectional associations between cannabis and sleep. In summary, based on recent research findings there appears to be positive association between cannabis use and sleep quality, particularly among middle-aged adults with anxiety and depression. Yet, more research utilizing experimental designs with adequate control conditions is needed, particularly in adolescent populations. Further, ascertaining mechanisms linking the ECS to sleep behavior and physiology and the pharmacological effects of distinct cannabis modes and formulations on sleep remains an important research endeavor.</p></sec><sec id="Sec26" disp-level="1"><title>Key References</title>
<list list-type="bullet"><list-item><p id="Par60">Dokkedal-Silva V, Fernandes GL, Morelhao PK, Pires GN, Rowlett JK, Galduroz JCF, et al. Sleep, psychiatric and socioeconomic factors associated with substance use in a large population sample: A cross-sectional study. Pharmacology Biochemistry and Behavior. 2021;210:173274. This study used self-reported and objective sleep phenotypes to comprehensively examine relations among cannabis, sleep, and depression and anxiety.</p></list-item><list-item><p id="Par61">Kuhathasan N, Minuzzi L, MacKillop J, Frey BN. An investigation of cannabis use for insomnia in depression and anxiety in a naturalistic sample. BMC psychiatry. 2022;22(1):303. This study used patient-reported outcome data to demonstrate how different cannabis products impact self-reported insomnia symptoms.</p></list-item><list-item><p id="Par62">Walsh CA, Euler E, Do LA, Zheng A, Eckel SP, Harlow BL, et al. Cannabis use and sleep problems among young adults by mental health status: A prospective cohort study. Addiction. 2024. This study demonstrates that links between cannabis and sleep problems differ based on baseline mental health status.</p></list-item></list>
</sec><sec id="notes1" disp-level="1"><title>Authors’ Contributions</title><p>B.B played a lead role in conceptualizing the overarching research goals and aims, literature search, supervision, visualization, writing of original draft, and writing of review and editing. S.T. played a lead role in literature search and conceptualizing the overarching research goals, and a supporting role in writing of review and editing. A.S., R.G., and M.M. played lead roles in writing of review and editing; supporting roles in conceptualizing the overarching research goals and aims.</p></sec><sec id="notes2" disp-level="1"><title>Funding</title><p>This work was supported by the Department of Veterans Affairs (IK2CX002645; Berey) and the National Institutes of Health (K08DA048137 [Sokolovsky]; K23DA050911 [Thomas]; K08AA027551 [Gunn])</p></sec><sec id="notes3" disp-level="1"><title>Data Availability</title><p>No datasets were generated or analysed during the current study.</p></sec><sec id="notes4" disp-level="1"><title>Declarations</title><sec id="FPar1" disp-level="2"><title>Ethics Approval and Consent to Participate</title><p id="Par63">All studies with human or animal subjects are published and followed ethical standards.</p></sec><sec id="FPar2" disp-level="2"><title>Competing Interests</title><p id="Par64">The authors declare no competing interests.</p></sec><sec id="FPar3" disp-level="2"><title>Conflict of Interest</title><p id="Par65">None of the authors have any conflicts of interest to disclose. The content is solely the responsibility of the authors and does not necessarily represent the official views or policy of the National Institutes of Health, the Department of Veterans Affairs or the United States Government.</p></sec></sec><sec id="fn-group1" sec-type="fn-group" disp-level="1"><title>Footnotes</title><fn-group><fn id="Fn1"><label>1</label><p id="Par14"> Hypersomnia symptoms were present in up to 50% of individuals with a past-year Major Depressive Episode, and up to 30% of individuals experienced both hypersomnia and insomnia [<xref rid="CR73" ref-type="bibr">73</xref>]. Although factors related to hypersomnia are also of key scientific interest, we focus here on insomnia symptoms which are both more prevalent and serve as a common motive for medical cannabis use.</p></fn><fn id="fn2"><p><bold>Publisher’s Note</bold></p><p>Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.</p></fn></fn-group></sec><sec id="Bib1" sec-type="ref-list" disp-level="1"><title>References</title><sec id="Bib1_sec2" disp-level="2"><ref-list><ref id="CR1"><label>1.</label><mixed-citation id="mc-CR1"><named-content content-type="citation-string">Bridgeman MB, Abazia DT. Medicinal cannabis: history, pharmacology, and implications for the acute care setting. Pharm Ther. 2017;42(3):180.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC5312634"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28250701"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Bridgeman MB, Abazia DT. Medicinal cannabis: history, pharmacology, and implications for the acute care setting. Pharm Ther. 2017;42(3):180."/></mixed-citation></ref><ref id="CR2"><label>2.</label><mixed-citation id="mc-CR2"><named-content content-type="citation-string">Crocq M-A. History of cannabis and the endocannabinoid system. Dialog Clin Neurosci. 2020;22(3):223–8.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.31887/DCNS.2020.22.3/mcrocq"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7605027"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="33162765"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Crocq M-A. History of cannabis and the endocannabinoid system. Dialog Clin Neurosci. 2020;22(3):223–8."/></mixed-citation></ref><ref id="CR3"><label>3.</label><mixed-citation><named-content content-type="citation-string">Hsu M, Shah A, Jordan A, Gold MS, Hill KP. Therapeutic Use of Cannabis and Cannabinoids: A Review. JAMA. 2026;335(4):345–359. </named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1001/jama.2025.19433"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="41296368"/></mixed-citation></ref><ref id="CR4"><label>4.</label><mixed-citation id="mc-CR4"><named-content content-type="citation-string">Johnson JK, Colby A. History of cannabis regulation and medicinal therapeutics: It’s complicated. Clin Ther. 2023;45(6):521–6.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.clinthera.2023.04.011"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="37414502"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Johnson JK, Colby A. History of cannabis regulation and medicinal therapeutics: It’s complicated. Clin Ther. 2023;45(6):521–6."/></mixed-citation></ref><ref id="CR5"><label>5.</label><mixed-citation id="mc-CR5"><named-content content-type="citation-string">Buysse DJ. Sleep health: can we define it? Does it matter? Sleep. 2014;37(1):9–17.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.5665/sleep.3298"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC3902880"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="24470692"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Buysse DJ. Sleep health: can we define it? Does it matter? Sleep. 2014;37(1):9–17."/></mixed-citation></ref><ref id="CR6"><label>6.</label><mixed-citation id="mc-CR6"><named-content content-type="citation-string">Ford ES, Cunningham TJ, Giles WH, Croft JB. Trends in insomnia and excessive daytime sleepiness among U.S. adults from 2002 to 2012. Sleep Med. 2015;16(3):372–8.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.sleep.2014.12.008"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC4763609"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="25747141"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Ford ES, Cunningham TJ, Giles WH, Croft JB. Trends in insomnia and excessive daytime sleepiness among U.S. adults from 2002 to 2012. Sleep Med. 2015;16(3):372–8."/></mixed-citation></ref><ref id="CR7"><label>7.</label><mixed-citation><named-content content-type="citation-string">Wang S, Rossheim ME, Nandy RR. Trends in prevalence of short sleep duration and trouble sleeping among US adults, 2005–2018. Sleep. 2023;46(1):zsac231. 10.1093/sleep/zsac231.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/sleep/zsac231"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36152031"/></mixed-citation></ref><ref id="CR8"><label>8.</label><mixed-citation id="mc-CR8"><named-content content-type="citation-string">Roth T. Insomnia: definition, prevalence, etiology, and consequences. J Clin Sleep Med. 2007;3(5 suppl):S7–10.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC1978319"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="17824495"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Roth T. Insomnia: definition, prevalence, etiology, and consequences. J Clin Sleep Med. 2007;3(5 suppl):S7–10."/></mixed-citation></ref><ref id="CR9"><label>9.</label><mixed-citation><named-content content-type="citation-string">McArdle N, Ward SV, Bucks RS, Maddison K, Smith A, Huang RC et al. The prevalence of common sleep disorders in young adults: a descriptive population-based study. LID - zsaa072 [pii] LID – 10.1093/sleep/zsaa072 [doi]. (1550–9109 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/sleep/zsaa072"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="32280974"/></mixed-citation></ref><ref id="CR10"><label>10.</label><mixed-citation><named-content content-type="citation-string">Aernout E, Benradia I, Hazo JB, Sy A, Askevis-Leherpeux F, Sebbane D et al. International study of the prevalence and factors associated with insomnia in the general population. (1878–5506 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.sleep.2021.03.028"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="33957414"/></mixed-citation></ref><ref id="CR11"><label>11.</label><mixed-citation id="mc-CR11"><named-content content-type="citation-string">Bachhuber M, Arnsten JH, Wurm G. Use of cannabis to relieve pain and promote sleep by customers at an adult use dispensary. J Psychoactive Drugs. 2019;51(5):400–4.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/02791072.2019.1626953"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6823130"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31264536"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Bachhuber M, Arnsten JH, Wurm G. Use of cannabis to relieve pain and promote sleep by customers at an adult use dispensary. J Psychoactive Drugs. 2019;51(5):400–4."/></mixed-citation></ref><ref id="CR12"><label>12.</label><mixed-citation><named-content content-type="citation-string">Berey BL, Aston ER, Gebru NM, Merrill JE. Differences in cannabis use characteristics, routines, and reasons for use among individuals with and without a medical cannabis card. Exp Clin Psychopharmacol. 2022;31(1):14–22.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/pha0000542"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC9276841"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35025588"/></mixed-citation></ref><ref id="CR13"><label>13.</label><mixed-citation><named-content content-type="citation-string">Goodhines PA, Gellis LA, Ansell EB, Park A. Cannabis and alcohol use for sleep aid: A daily diary investigation. Health Psychol. 2019;31(11):1036–47.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/hea0000765"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6800769"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31169378"/></mixed-citation></ref><ref id="CR14"><label>14.</label><mixed-citation id="mc-CR14"><named-content content-type="citation-string">Haney M, Gunderson EW, Rabkin J, Hart CL, Vosburg SK, Comer SD, et al. Dronabinol and marijuana in HIV-positive marijuana smokers: caloric intake, mood, and sleep. JAIDS J Acquir Immune Defic Syndr. 2007;45(5):545–54.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/QAI.0b013e31811ed205"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="17589370"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Haney M, Gunderson EW, Rabkin J, Hart CL, Vosburg SK, Comer SD, et al. Dronabinol and marijuana in HIV-positive marijuana smokers: caloric intake, mood, and sleep. JAIDS J Acquir Immune Defic Syndr. 2007;45(5):545–54."/></mixed-citation></ref><ref id="CR15"><label>15.</label><mixed-citation id="mc-CR15"><named-content content-type="citation-string">Metrik J, Jackson K, Bassett SS, Zvolensky MJ, Seal K, Borsari B. The mediating roles of coping, sleep, and anxiety motives in cannabis use and problems among returning veterans with PTSD and MDD. Psychol Addict Behav. 2016;30(7):743.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/adb0000210"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC5218528"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27786514"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Metrik J, Jackson K, Bassett SS, Zvolensky MJ, Seal K, Borsari B. The mediating roles of coping, sleep, and anxiety motives in cannabis use and problems among returning veterans with PTSD and MDD. Psychol Addict Behav. 2016;30(7):743."/></mixed-citation></ref><ref id="CR16"><label>16.</label><mixed-citation id="mc-CR16"><named-content content-type="citation-string">Walsh Z, Callaway R, Belle-Isle L, Capler R, Kay R, Lucas P, et al. Cannabis for therapeutic purposes: patient characteristics, access, and reasons for use. Int J Drug Policy. 2013;24(6):511–6.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugpo.2013.08.010"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="24095000"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Walsh Z, Callaway R, Belle-Isle L, Capler R, Kay R, Lucas P, et al. Cannabis for therapeutic purposes: patient characteristics, access, and reasons for use. Int J Drug Policy. 2013;24(6):511–6."/></mixed-citation></ref><ref id="CR17"><label>17.</label><mixed-citation id="mc-CR17"><named-content content-type="citation-string">Choi S, Huang BC, Gamaldo CE. Therapeutic Uses of Cannabis on Sleep Disorders and Related Conditions. J Clin Neurophysiol. 2020;37(1):39–49.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/WNP.0000000000000617"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31895189"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Choi S, Huang BC, Gamaldo CE. Therapeutic Uses of Cannabis on Sleep Disorders and Related Conditions. J Clin Neurophysiol. 2020;37(1):39–49."/></mixed-citation></ref><ref id="CR18"><label>18.</label><mixed-citation id="mc-CR18"><named-content content-type="citation-string">Conroy DA, Arnedt JT. Sleep and substance use disorders: an update. Curr psychiatry Rep. 2014;16(10):487.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s11920-014-0487-3"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="25135784"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Conroy DA, Arnedt JT. Sleep and substance use disorders: an update. Curr psychiatry Rep. 2014;16(10):487."/></mixed-citation></ref><ref id="CR19"><label>19.</label><mixed-citation id="mc-CR19"><named-content content-type="citation-string">Abrams DI. The therapeutic effects of Cannabis and cannabinoids: An update from the National Academies of Sciences, Engineering and Medicine report. Eur J Intern Med. 2018;49:7–11.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.ejim.2018.01.003"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="29325791"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Abrams DI. The therapeutic effects of Cannabis and cannabinoids: An update from the National Academies of Sciences, Engineering and Medicine report. Eur J Intern Med. 2018;49:7–11."/></mixed-citation></ref><ref id="CR20"><label>20.</label><mixed-citation id="mc-CR20"><named-content content-type="citation-string">Bradford AC, Bradford WD. The Impact of Medical Cannabis Legalization on Prescription Medication Use and Costs under Medicare Part D. J Law Econ. 2018;61(3):461–87.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Bradford AC, Bradford WD. The Impact of Medical Cannabis Legalization on Prescription Medication Use and Costs under Medicare Part D. J Law Econ. 2018;61(3):461–87."/></mixed-citation></ref><ref id="CR21"><label>21.</label><mixed-citation><named-content content-type="citation-string">Doremus JM, Stith SS, Vigil JM. Using recreational cannabis to treat insomnia: Evidence from over-the-counter sleep aid sales in Colorado. (1873–6963 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.ctim.2019.102207"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31779999"/></mixed-citation></ref><ref id="CR22"><label>22.</label><mixed-citation id="mc-CR22"><named-content content-type="citation-string">Goodhines PA, Gellis LA, Kim J, Fucito LM, Park A. Self-medication for sleep in college students: Concurrent and prospective associations with sleep and alcohol behavior. Behav sleep Med. 2019;17(3):327–41.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/15402002.2017.1357119"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC5787047"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28749704"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Goodhines PA, Gellis LA, Kim J, Fucito LM, Park A. Self-medication for sleep in college students: Concurrent and prospective associations with sleep and alcohol behavior. Behav sleep Med. 2019;17(3):327–41."/></mixed-citation></ref><ref id="CR23"><label>23.</label><mixed-citation id="mc-CR23"><named-content content-type="citation-string">Kang H, Clary K, Zhao Z, Quintero Silva L, Bobitt J. Characteristics of Cannabis and Opioid Users Among Older U.S. Veterans and Their Health Outcomes: A Longitudinal Perspective. J Psychoact Drugs. 2024;56(2):157–67.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/02791072.2023.2186286"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36919533"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Kang H, Clary K, Zhao Z, Quintero Silva L, Bobitt J. Characteristics of Cannabis and Opioid Users Among Older U.S. Veterans and Their Health Outcomes: A Longitudinal Perspective. J Psychoact Drugs. 2024;56(2):157–67."/></mixed-citation></ref><ref id="CR24"><label>24.</label><mixed-citation id="mc-CR24"><named-content content-type="citation-string">Graupensperger S, Hultgren BA, Fairlie AM, Lee CM, Larimer ME. Using Alcohol and Cannabis as Sleep Aids: Associations with Descriptive Norms Among College Students. Behav Sleep Med. 2023;21(1):84–96.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/15402002.2022.2040505"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC9372229"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35156478"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Graupensperger S, Hultgren BA, Fairlie AM, Lee CM, Larimer ME. Using Alcohol and Cannabis as Sleep Aids: Associations with Descriptive Norms Among College Students. Behav Sleep Med. 2023;21(1):84–96."/></mixed-citation></ref><ref id="CR25"><label>25.</label><mixed-citation id="mc-CR25"><named-content content-type="citation-string">Brower KJ. Insomnia, alcoholism and relapse. Sleep Med Rev. 2003;7(6):523–39.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/s1087-0792(03)90005-0"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="15018094"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Brower KJ. Insomnia, alcoholism and relapse. Sleep Med Rev. 2003;7(6):523–39."/></mixed-citation></ref><ref id="CR26"><label>26.</label><mixed-citation id="mc-CR26"><named-content content-type="citation-string">Edwards S, Reeves GM, Fishbein D. Integrative model of the relationship between sleep problems and risk for youth substance use. Curr Addict Rep. 2015;2(2):130–40.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Edwards S, Reeves GM, Fishbein D. Integrative model of the relationship between sleep problems and risk for youth substance use. Curr Addict Rep. 2015;2(2):130–40."/></mixed-citation></ref><ref id="CR27"><label>27.</label><mixed-citation id="mc-CR27"><named-content content-type="citation-string">Angarita GA, Emadi N, Hodges S, Morgan PT. Sleep abnormalities associated with alcohol, cannabis, cocaine, and opiate use: a comprehensive review. Addict Sci Clin Pract. 2016;11(1):1–17.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s13722-016-0056-7"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC4845302"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27117064"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Angarita GA, Emadi N, Hodges S, Morgan PT. Sleep abnormalities associated with alcohol, cannabis, cocaine, and opiate use: a comprehensive review. Addict Sci Clin Pract. 2016;11(1):1–17."/></mixed-citation></ref><ref id="CR28"><label>28.</label><mixed-citation id="mc-CR28"><named-content content-type="citation-string">Wong MM, Craun EA, Bravo AJ, Pearson MR. Insomnia symptoms, cannabis protective behavioral strategies, and hazardous cannabis use among US college students. Exp Clin Psychopharmacol. 2019;27(4):309.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/pha0000273"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6764444"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30907602"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Wong MM, Craun EA, Bravo AJ, Pearson MR. Insomnia symptoms, cannabis protective behavioral strategies, and hazardous cannabis use among US college students. Exp Clin Psychopharmacol. 2019;27(4):309."/></mixed-citation></ref><ref id="CR29"><label>29.</label><mixed-citation id="mc-CR29"><named-content content-type="citation-string">Mike TB, Shaw DS, Forbes EE, Sitnick SL, Hasler BP. The hazards of bad sleep—Sleep duration and quality as predictors of adolescent alcohol and cannabis use. Drug Alcohol Depend. 2016;168:335–9.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2016.08.009"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC5086262"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27659736"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Mike TB, Shaw DS, Forbes EE, Sitnick SL, Hasler BP. The hazards of bad sleep—Sleep duration and quality as predictors of adolescent alcohol and cannabis use. Drug Alcohol Depend. 2016;168:335–9."/></mixed-citation></ref><ref id="CR30"><label>30.</label><mixed-citation id="mc-CR30"><named-content content-type="citation-string">Fakier N, Wild LG. Associations among sleep problems, learning difficulties and substance use in adolescence. J Adolesc. 2011;34(4):717–26.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.adolescence.2010.09.010"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="20952052"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Fakier N, Wild LG. Associations among sleep problems, learning difficulties and substance use in adolescence. J Adolesc. 2011;34(4):717–26."/></mixed-citation></ref><ref id="CR31"><label>31.</label><mixed-citation id="mc-CR31"><named-content content-type="citation-string">Conroy DA, Kurth ME, Strong DR, Brower KJ, Stein MD. Marijuana use patterns and sleep among community-based young adults. J Addict Dis. 2016;35(2):135–43.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/10550887.2015.1132986"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC4911998"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="26727193"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Conroy DA, Kurth ME, Strong DR, Brower KJ, Stein MD. Marijuana use patterns and sleep among community-based young adults. J Addict Dis. 2016;35(2):135–43."/></mixed-citation></ref><ref id="CR32"><label>32.</label><mixed-citation id="mc-CR32"><named-content content-type="citation-string">Nguyen-Louie TT, Brumback T, Worley MJ, Colrain IM, Matt GE, Squeglia LM, et al. Effects of sleep on substance use in adolescents: a longitudinal perspective. Addict Biol. 2018;23(2):750–60.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1111/adb.12519"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC5770246"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28547821"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Nguyen-Louie TT, Brumback T, Worley MJ, Colrain IM, Matt GE, Squeglia LM, et al. Effects of sleep on substance use in adolescents: a longitudinal perspective. Addict Biol. 2018;23(2):750–60."/></mixed-citation></ref><ref id="CR33"><label>33.</label><mixed-citation id="mc-CR33"><named-content content-type="citation-string">Troxel WM, Ewing B, D’Amico EJ. Examining racial/ethnic disparities in the association between adolescent sleep and alcohol or marijuana use. Sleep Health. 2015;1(2):104–8.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.sleh.2015.03.005"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC4591872"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="26436131"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Troxel WM, Ewing B, D’Amico EJ. Examining racial/ethnic disparities in the association between adolescent sleep and alcohol or marijuana use. Sleep Health. 2015;1(2):104–8."/></mixed-citation></ref><ref id="CR34"><label>34.</label><mixed-citation id="mc-CR34"><named-content content-type="citation-string">Winiger EA, Hitchcock LN, Bryan AD, Bidwell LC. Cannabis use and sleep: expectations, outcomes, and the role of age. Addict Behav. 2021;112:106642.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.addbeh.2020.106642"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7572650"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="32949837"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Winiger EA, Hitchcock LN, Bryan AD, Bidwell LC. Cannabis use and sleep: expectations, outcomes, and the role of age. Addict Behav. 2021;112:106642."/></mixed-citation></ref><ref id="CR35"><label>35.</label><mixed-citation id="mc-CR35"><named-content content-type="citation-string">Murillo-Rodriguez E, Poot-Ake A, Arias-Carrion O, Pacheco-Pantoja E, Fuente-Ortegon Ade L, Arankowsky-Sandoval G. The emerging role of the endocannabinoid system in the sleep-wake cycle modulation. Cent Nerv Syst Agents Med Chem. 2011;11(3):189–96.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.2174/187152411798047780"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="21919868"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Murillo-Rodriguez E, Poot-Ake A, Arias-Carrion O, Pacheco-Pantoja E, Fuente-Ortegon Ade L, Arankowsky-Sandoval G. The emerging role of the endocannabinoid system in the sleep-wake cycle modulation. Cent Nerv Syst Agents Med Chem. 2011;11(3):189–96."/></mixed-citation></ref><ref id="CR36"><label>36.</label><mixed-citation id="mc-CR36"><named-content content-type="citation-string">Tringale R, Jensen C. Cannabis and insomnia. Depression. 2011;4(12):0–68.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Tringale R, Jensen C. Cannabis and insomnia. Depression. 2011;4(12):0–68."/></mixed-citation></ref><ref id="CR37"><label>37.</label><mixed-citation id="mc-CR37"><named-content content-type="citation-string">Ware MA, Wang T, Shapiro S, Robinson A, Ducruet T, Huynh T, et al. Smoked cannabis for chronic neuropathic pain: a randomized controlled trial. CMAJ. 2010;182(14):E694–701.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1503/cmaj.091414"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC2950205"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="20805210"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Ware MA, Wang T, Shapiro S, Robinson A, Ducruet T, Huynh T, et al. Smoked cannabis for chronic neuropathic pain: a randomized controlled trial. CMAJ. 2010;182(14):E694–701."/></mixed-citation></ref><ref id="CR38"><label>38.</label><mixed-citation id="mc-CR38"><named-content content-type="citation-string">Mondino A, Cavelli M, Gonzalez J, Santana N, Castro-Zaballa S, Mechoso B, et al. Acute effect of vaporized Cannabis on sleep and electrocortical activity. Pharmacol Biochem Behav. 2019;179:113–23.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.pbb.2019.02.012"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30822492"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Mondino A, Cavelli M, Gonzalez J, Santana N, Castro-Zaballa S, Mechoso B, et al. Acute effect of vaporized Cannabis on sleep and electrocortical activity. Pharmacol Biochem Behav. 2019;179:113–23."/></mixed-citation></ref><ref id="CR39"><label>39.</label><mixed-citation id="mc-CR39"><named-content content-type="citation-string">Pivik R, Zarcone V, Dement W, Hollister L. Delta-9‐tetrahydrocannabinol and synhexl: Effects on human sleep patterns. Clin Pharmacol Ther. 1972;13(3):426–35.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1002/cpt1972133426"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="4337346"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Pivik R, Zarcone V, Dement W, Hollister L. Delta-9‐tetrahydrocannabinol and synhexl: Effects on human sleep patterns. Clin Pharmacol Ther. 1972;13(3):426–35."/></mixed-citation></ref><ref id="CR40"><label>40.</label><mixed-citation id="mc-CR40"><named-content content-type="citation-string">Cousens K, DiMascio A. (–) δ 9 THC as an hypnotic. Psychopharmacologia. 1973;33(4):355–64.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/BF00437513"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="4776660"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Cousens K, DiMascio A. (–) δ 9 THC as an hypnotic. Psychopharmacologia. 1973;33(4):355–64."/></mixed-citation></ref><ref id="CR41"><label>41.</label><mixed-citation id="mc-CR41"><named-content content-type="citation-string">Chait LD. Subjective and behavioral effects of marijuana the morning after smoking. Psychopharmacology. 1990;100(3):328–33.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/BF02244601"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="2315429"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Chait LD. Subjective and behavioral effects of marijuana the morning after smoking. Psychopharmacology. 1990;100(3):328–33."/></mixed-citation></ref><ref id="CR42"><label>42.</label><mixed-citation id="mc-CR42"><named-content content-type="citation-string">Muzumdar N, Jackson KM, Buckman JF, Spaeth AM, Sokolovsky AW, Pawlak AP, et al. Dose-dependent Relationships of Same-day and Typical Substance Use to Sleep Duration in College Cannabis and Alcohol Users: A Multilevel Modeling Approach Using Daily Diary Data. Cannabis. 2023;6(3):49–63.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.26828/cannabis/2023/000179"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10683747"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="38035172"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Muzumdar N, Jackson KM, Buckman JF, Spaeth AM, Sokolovsky AW, Pawlak AP, et al. Dose-dependent Relationships of Same-day and Typical Substance Use to Sleep Duration in College Cannabis and Alcohol Users: A Multilevel Modeling Approach Using Daily Diary Data. Cannabis. 2023;6(3):49–63."/></mixed-citation></ref><ref id="CR43"><label>43.</label><mixed-citation><named-content content-type="citation-string">Barratt ES, Beaver W, White R. The effects of marijuana on human sleep patterns. Biol Psychiatry. 1974.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="4361028"/></mixed-citation></ref><ref id="CR44"><label>44.</label><mixed-citation id="mc-CR44"><named-content content-type="citation-string">Althoff MD, Kinney GL, Aloia MS, Sempio C, Klawitter J, Bowler RP. The impact of cannabis use proximal to sleep and cannabinoid metabolites on sleep architecture. J Clin Sleep Med. 2024;20(10):1615–25.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.5664/jcsm.11212"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC11446118"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="38804689"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Althoff MD, Kinney GL, Aloia MS, Sempio C, Klawitter J, Bowler RP. The impact of cannabis use proximal to sleep and cannabinoid metabolites on sleep architecture. J Clin Sleep Med. 2024;20(10):1615–25."/></mixed-citation></ref><ref id="CR45"><label>45.</label><mixed-citation id="mc-CR45"><named-content content-type="citation-string">Bolla KI, Lesage SR, Gamaldo CE, Neubauer DN, Funderburk FR, Cadet JL, et al. Sleep disturbance in heavy marijuana users. Sleep. 2008;31(6):901–8.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/sleep/31.6.901"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC2442418"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="18548836"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Bolla KI, Lesage SR, Gamaldo CE, Neubauer DN, Funderburk FR, Cadet JL, et al. Sleep disturbance in heavy marijuana users. Sleep. 2008;31(6):901–8."/></mixed-citation></ref><ref id="CR46"><label>46.</label><mixed-citation id="mc-CR46"><named-content content-type="citation-string">Pacek LR, Herrmann ES, Smith MT, Vandrey R. Sleep continuity, architecture and quality among treatment-seeking cannabis users: An in-home, unattended polysomnographic study. Exp Clin Psychopharmacol. 2017;25(4):295.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/pha0000126"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6309181"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28782982"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Pacek LR, Herrmann ES, Smith MT, Vandrey R. Sleep continuity, architecture and quality among treatment-seeking cannabis users: An in-home, unattended polysomnographic study. Exp Clin Psychopharmacol. 2017;25(4):295."/></mixed-citation></ref><ref id="CR47"><label>47.</label><mixed-citation id="mc-CR47"><named-content content-type="citation-string">Karacan I, Fernández-Salas A, Coggins W, Carter W, Williams R, Thornby J, et al. Sleep electroencephalographic‐electrooculographic characteristics of chronic marijuana users: Part I. Ann N Y Acad Sci. 1976;282(1):348–74.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1111/j.1749-6632.1976.tb49909.x"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="190937"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Karacan I, Fernández-Salas A, Coggins W, Carter W, Williams R, Thornby J, et al. Sleep electroencephalographic‐electrooculographic characteristics of chronic marijuana users: Part I. Ann N Y Acad Sci. 1976;282(1):348–74."/></mixed-citation></ref><ref id="CR48"><label>48.</label><mixed-citation id="mc-CR48"><named-content content-type="citation-string">Nicholson AN, Turner C, Stone BM, Robson PJ. Effect of ∆-9-tetrahydrocannabinol and cannabidiol on nocturnal sleep and early-morning behavior in young adults. J Clin Psychopharmacol. 2004;24(3):305–13.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/01.jcp.0000125688.05091.8f"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="15118485"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Nicholson AN, Turner C, Stone BM, Robson PJ. Effect of ∆-9-tetrahydrocannabinol and cannabidiol on nocturnal sleep and early-morning behavior in young adults. J Clin Psychopharmacol. 2004;24(3):305–13."/></mixed-citation></ref><ref id="CR49"><label>49.</label><mixed-citation id="mc-CR49"><named-content content-type="citation-string">Babson KA, Boden MT, Bonn-Miller MO. The impact of perceived sleep quality and sleep efficiency/duration on cannabis use during a self-guided quit attempt. Addict Behav. 2013;38(11):2707–13.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.addbeh.2013.06.012"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="23906725"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Babson KA, Boden MT, Bonn-Miller MO. The impact of perceived sleep quality and sleep efficiency/duration on cannabis use during a self-guided quit attempt. Addict Behav. 2013;38(11):2707–13."/></mixed-citation></ref><ref id="CR50"><label>50.</label><mixed-citation id="mc-CR50"><named-content content-type="citation-string">Babson KA, Boden MT, Harris AH, Stickle TR, Bonn-Miller MO. Poor sleep quality as a risk factor for lapse following a cannabis quit attempt. J Subst Abuse Treat. 2013;44(4):438–43.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.jsat.2012.08.224"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="23098380"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Babson KA, Boden MT, Harris AH, Stickle TR, Bonn-Miller MO. Poor sleep quality as a risk factor for lapse following a cannabis quit attempt. J Subst Abuse Treat. 2013;44(4):438–43."/></mixed-citation></ref><ref id="CR51"><label>51.</label><mixed-citation id="mc-CR51"><named-content content-type="citation-string">Budney AJ, Moore BA, Vandrey RG, Hughes JR. The time course and significance of cannabis withdrawal. J Abnorm Psychol. 2003;112(3):393.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/0021-843x.112.3.393"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="12943018"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Budney AJ, Moore BA, Vandrey RG, Hughes JR. The time course and significance of cannabis withdrawal. J Abnorm Psychol. 2003;112(3):393."/></mixed-citation></ref><ref id="CR52"><label>52.</label><mixed-citation id="mc-CR52"><named-content content-type="citation-string">Haney M, Ward AS, Comer SD, Foltin RW, Fischman MW. Abstinence symptoms following smoked marijuana in humans. Psychopharmacology. 1999;141(4):395–404.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s002130050849"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="10090647"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Haney M, Ward AS, Comer SD, Foltin RW, Fischman MW. Abstinence symptoms following smoked marijuana in humans. Psychopharmacology. 1999;141(4):395–404."/></mixed-citation></ref><ref id="CR53"><label>53.</label><mixed-citation id="mc-CR53"><named-content content-type="citation-string">Belendiuk KA, Babson KA, Vandrey R, Bonn-Miller MO. Cannabis species and cannabinoid concentration preference among sleep-disturbed medicinal cannabis users. Addict Behav. 2015;50:178–81.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.addbeh.2015.06.032"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="26151582"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Belendiuk KA, Babson KA, Vandrey R, Bonn-Miller MO. Cannabis species and cannabinoid concentration preference among sleep-disturbed medicinal cannabis users. Addict Behav. 2015;50:178–81."/></mixed-citation></ref><ref id="CR54"><label>54.</label><mixed-citation id="mc-CR54"><named-content content-type="citation-string">Lankenau SE, Fedorova EV, Reed M, Schrager SM, Iverson E, Wong CF. Marijuana practices and patterns of use among young adult medical marijuana patients and non-patient marijuana users. Drug Alcohol Depend. 2017;170:181–8.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2016.10.025"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6540119"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27987475"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Lankenau SE, Fedorova EV, Reed M, Schrager SM, Iverson E, Wong CF. Marijuana practices and patterns of use among young adult medical marijuana patients and non-patient marijuana users. Drug Alcohol Depend. 2017;170:181–8."/></mixed-citation></ref><ref id="CR55"><label>55.</label><mixed-citation id="mc-CR55"><named-content content-type="citation-string">Stith SS, Vigil JM. Federal barriers to Cannabis research. Science. 2016;352(6290):1182.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1126/science.aaf7450"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27257247"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Stith SS, Vigil JM. Federal barriers to Cannabis research. Science. 2016;352(6290):1182."/></mixed-citation></ref><ref id="CR56"><label>56.</label><mixed-citation id="mc-CR56"><named-content content-type="citation-string">Goodwin RD, Dierker LC, Wu M, Galea S, Hoven CW, Weinberger AH. Trends in U.S. Depression Prevalence From 2015 to 2020: The Widening Treatment Gap. Am J Prev Med. 2022;63(5):726–33.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.amepre.2022.05.014"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC9483000"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36272761"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Goodwin RD, Dierker LC, Wu M, Galea S, Hoven CW, Weinberger AH. Trends in U.S. Depression Prevalence From 2015 to 2020: The Widening Treatment Gap. Am J Prev Med. 2022;63(5):726–33."/></mixed-citation></ref><ref id="CR57"><label>57.</label><mixed-citation id="mc-CR57"><named-content content-type="citation-string">Goodwin RD, Weinberger AH, Kim JH, Wu M, Galea S. Trends in anxiety among adults in the United States, 2008–2018: Rapid increases among young adults. J Psychiatr Res. 2020;130:441–6.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.jpsychires.2020.08.014"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7441973"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="32905958"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Goodwin RD, Weinberger AH, Kim JH, Wu M, Galea S. Trends in anxiety among adults in the United States, 2008–2018: Rapid increases among young adults. J Psychiatr Res. 2020;130:441–6."/></mixed-citation></ref><ref id="CR58"><label>58.</label><mixed-citation id="mc-CR58"><named-content content-type="citation-string">Compton WM, Han B, Jones CM, Blanco C, Hughes A. Marijuana use and use disorders in adults in the USA, 2002–14: analysis of annual cross-sectional surveys. Lancet Psychiatry. 2016;3(10):954–64.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/S2215-0366(16)30208-5"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27592339"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Compton WM, Han B, Jones CM, Blanco C, Hughes A. Marijuana use and use disorders in adults in the USA, 2002–14: analysis of annual cross-sectional surveys. Lancet Psychiatry. 2016;3(10):954–64."/></mixed-citation></ref><ref id="CR59"><label>59.</label><mixed-citation id="mc-CR59"><named-content content-type="citation-string">Moreno-Agostino D, Wu Y-T, Daskalopoulou C, Hasan MT, Huisman M, Prina M. Global trends in the prevalence and incidence of depression: a systematic review and meta-analysis. J Affect Disord. 2021;281:235–43.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.jad.2020.12.035"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="33338841"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Moreno-Agostino D, Wu Y-T, Daskalopoulou C, Hasan MT, Huisman M, Prina M. Global trends in the prevalence and incidence of depression: a systematic review and meta-analysis. J Affect Disord. 2021;281:235–43."/></mixed-citation></ref><ref id="CR60"><label>60.</label><mixed-citation id="mc-CR60"><named-content content-type="citation-string">Shao H, Du H, Gan Q, Ye D, Chen Z, Zhu Y, et al. Trends of the global burden of disease attributable to cannabis use disorder in 204 countries and territories, 1990–2019: Results from the Disease Burden Study 2019. Int J Mental Health Addict. 2024;22(4):2485–507.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s11469-022-00999-4"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC9913032"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36817983"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Shao H, Du H, Gan Q, Ye D, Chen Z, Zhu Y, et al. Trends of the global burden of disease attributable to cannabis use disorder in 204 countries and territories, 1990–2019: Results from the Disease Burden Study 2019. Int J Mental Health Addict. 2024;22(4):2485–507."/></mixed-citation></ref><ref id="CR61"><label>61.</label><mixed-citation id="mc-CR61"><named-content content-type="citation-string">Xiong P, Liu M, Liu B, Hall BJ. Trends in the incidence and DALYs of anxiety disorders at the global, regional, and national levels: Estimates from the Global Burden of Disease Study 2019. J Affect Disord. 2022;297:83–93.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.jad.2021.10.022"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="34678404"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Xiong P, Liu M, Liu B, Hall BJ. Trends in the incidence and DALYs of anxiety disorders at the global, regional, and national levels: Estimates from the Global Burden of Disease Study 2019. J Affect Disord. 2022;297:83–93."/></mixed-citation></ref><ref id="CR62"><label>62.</label><mixed-citation><named-content content-type="citation-string">Cooper ML, Kuntsche E, Levitt A, Barber LL, Wolf S. Motivational models of substance use: A review of theory and research on motives for using alcohol, marijuana, and tobacco. 2016.</named-content></mixed-citation></ref><ref id="CR63"><label>63.</label><mixed-citation><named-content content-type="citation-string">Khantzian EJ. The self-medication hypothesis of substance use disorders: a reconsideration and recent applications. (1067–3229 (Print)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.3109/10673229709030550"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="9385000"/></mixed-citation></ref><ref id="CR64"><label>64.</label><mixed-citation id="mc-CR64"><named-content content-type="citation-string">Kosiba JD, Maisto SA, Ditre JW. Patient-reported use of medical cannabis for pain, anxiety, and depression symptoms: Systematic review and meta-analysis. Soc Sci Med. 2019;233:181–92.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.socscimed.2019.06.005"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31207470"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Kosiba JD, Maisto SA, Ditre JW. Patient-reported use of medical cannabis for pain, anxiety, and depression symptoms: Systematic review and meta-analysis. Soc Sci Med. 2019;233:181–92."/></mixed-citation></ref><ref id="CR65"><label>65.</label><mixed-citation><named-content content-type="citation-string">Asarnow LD. Depression and sleep: what has the treatment research revealed and could the HPA axis be a potential mechanism? (2352–518 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.copsyc.2019.12.002"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC8412030"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31962280"/></mixed-citation></ref><ref id="CR66"><label>66.</label><mixed-citation id="mc-CR66"><named-content content-type="citation-string">Weinberger AH, Zhu J, Levin J, Barrington-Trimis JL, Copeland J, Wyka K, et al. Cannabis use among US adults with anxiety from 2008 to 2017: The role of state-level cannabis legalization. Drug Alcohol Depend. 2020;214:108163.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2020.108163"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="32707516"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Weinberger AH, Zhu J, Levin J, Barrington-Trimis JL, Copeland J, Wyka K, et al. Cannabis use among US adults with anxiety from 2008 to 2017: The role of state-level cannabis legalization. Drug Alcohol Depend. 2020;214:108163."/></mixed-citation></ref><ref id="CR67"><label>67.</label><mixed-citation id="mc-CR67"><named-content content-type="citation-string">Pacek LR, Weinberger AH, Zhu J, Goodwin RD. Rapid increase in the prevalence of cannabis use among people with depression in the United States, 2005-17: the role of differentially changing risk perceptions. Addiction. 2020;115(5):935–43.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1111/add.14883"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7156311"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31797462"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Pacek LR, Weinberger AH, Zhu J, Goodwin RD. Rapid increase in the prevalence of cannabis use among people with depression in the United States, 2005-17: the role of differentially changing risk perceptions. Addiction. 2020;115(5):935–43."/></mixed-citation></ref><ref id="CR68"><label>68.</label><mixed-citation id="mc-CR68"><named-content content-type="citation-string">Halladay JE, MacKillop J, Munn C, Jack SM, Georgiades K. Cannabis Use as a Risk Factor for Depression, Anxiety, and Suicidality: Epidemiological Associations and Implications for Nurses. J Addict Nurs. 2020;31(2):92–101.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/JAN.0000000000000334"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="32487935"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Halladay JE, MacKillop J, Munn C, Jack SM, Georgiades K. Cannabis Use as a Risk Factor for Depression, Anxiety, and Suicidality: Epidemiological Associations and Implications for Nurses. J Addict Nurs. 2020;31(2):92–101."/></mixed-citation></ref><ref id="CR69"><label>69.</label><mixed-citation id="mc-CR69"><named-content content-type="citation-string">Lev-Ran S, Roerecke M, Le Foll B, George T, McKenzie K, Rehm J. The association between cannabis use and depression: a systematic review and meta-analysis of longitudinal studies. Psychol Med. 2014;44(4):797–810.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1017/S0033291713001438"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="23795762"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Lev-Ran S, Roerecke M, Le Foll B, George T, McKenzie K, Rehm J. The association between cannabis use and depression: a systematic review and meta-analysis of longitudinal studies. Psychol Med. 2014;44(4):797–810."/></mixed-citation></ref><ref id="CR70"><label>70.</label><mixed-citation id="mc-CR70"><named-content content-type="citation-string">Kedzior KK, Laeber LT. A positive association between anxiety disorders and cannabis use or cannabis use disorders in the general population–a meta-analysis of 31 studies. BMC Psychiatry. 2014;14:136.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/1471-244X-14-136"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC4032500"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="24884989"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Kedzior KK, Laeber LT. A positive association between anxiety disorders and cannabis use or cannabis use disorders in the general population–a meta-analysis of 31 studies. BMC Psychiatry. 2014;14:136."/></mixed-citation></ref><ref id="CR71"><label>71.</label><mixed-citation id="mc-CR71"><named-content content-type="citation-string">Franzen PL, Buysse DJ. Sleep disturbances and depression: risk relationships for subsequent depression and therapeutic implications. Dialogues Clin Neurosci. 2008;10(4):473–81.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.31887/DCNS.2008.10.4/plfranzen"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC3108260"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="19170404"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Franzen PL, Buysse DJ. Sleep disturbances and depression: risk relationships for subsequent depression and therapeutic implications. Dialogues Clin Neurosci. 2008;10(4):473–81."/></mixed-citation></ref><ref id="CR72"><label>72.</label><mixed-citation id="mc-CR72"><named-content content-type="citation-string">Tsuno N, Besset A, Ritchie K. Sleep and depression. J Clin Psychiatry. 2005;66(10):1254–69.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.4088/jcp.v66n1008"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="16259539"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Tsuno N, Besset A, Ritchie K. Sleep and depression. J Clin Psychiatry. 2005;66(10):1254–69."/></mixed-citation></ref><ref id="CR73"><label>73.</label><mixed-citation id="mc-CR73"><named-content content-type="citation-string">Geoffroy PA, Hoertel N, Etain B, Bellivier F, Delorme R, Limosin F, et al. Insomnia and hypersomnia in major depressive episode: prevalence, sociodemographic characteristics and psychiatric comorbidity in a population-based study. J Affect Disord. 2018;226:132–41.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.jad.2017.09.032"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28972930"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Geoffroy PA, Hoertel N, Etain B, Bellivier F, Delorme R, Limosin F, et al. Insomnia and hypersomnia in major depressive episode: prevalence, sociodemographic characteristics and psychiatric comorbidity in a population-based study. J Affect Disord. 2018;226:132–41."/></mixed-citation></ref><ref id="CR74"><label>74.</label><mixed-citation id="mc-CR74"><named-content content-type="citation-string">Hein M, Lanquart JP, Loas G, Hubain P, Linkowski P. Similar polysomnographic pattern in primary insomnia and major depression with objective insomnia: a sign of common pathophysiology? BMC Psychiatry. 2017;17(1):273.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s12888-017-1438-4"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC5534116"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28754103"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Hein M, Lanquart JP, Loas G, Hubain P, Linkowski P. Similar polysomnographic pattern in primary insomnia and major depression with objective insomnia: a sign of common pathophysiology? BMC Psychiatry. 2017;17(1):273."/></mixed-citation></ref><ref id="CR75"><label>75.</label><mixed-citation id="mc-CR75"><named-content content-type="citation-string">Hudson JI, Pope HG, Sullivan LE, Waternaux CM, Keck PE, Broughton RJ. Good sleep, bad sleep: a meta-analysis of polysomnographic measures in insomnia, depression, and narcolepsy. Biol Psychiatry. 1992;32(11):958–75.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/0006-3223(92)90058-8"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="1467388"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Hudson JI, Pope HG, Sullivan LE, Waternaux CM, Keck PE, Broughton RJ. Good sleep, bad sleep: a meta-analysis of polysomnographic measures in insomnia, depression, and narcolepsy. Biol Psychiatry. 1992;32(11):958–75."/></mixed-citation></ref><ref id="CR76"><label>76.</label><mixed-citation id="mc-CR76"><named-content content-type="citation-string">Papadimitriou GN, Linkowski P. Sleep disturbance in anxiety disorders. Int Rev Psychiatry. 2005;17(4):229–36.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/09540260500104524"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="16194794"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Papadimitriou GN, Linkowski P. Sleep disturbance in anxiety disorders. Int Rev Psychiatry. 2005;17(4):229–36."/></mixed-citation></ref><ref id="CR77"><label>77.</label><mixed-citation id="mc-CR77"><named-content content-type="citation-string">Eaton WW, Badawi M, Melton B. Prodromes and precursors: epidemiologic data for primary prevention of disorders with slow onset. Am J Psychiatry. 1995;152(7):967–72.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1176/ajp.152.7.967"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="7793466"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Eaton WW, Badawi M, Melton B. Prodromes and precursors: epidemiologic data for primary prevention of disorders with slow onset. Am J Psychiatry. 1995;152(7):967–72."/></mixed-citation></ref><ref id="CR78"><label>78.</label><mixed-citation><named-content content-type="citation-string">Blum ID, Zhu L, Moquin L, Kokoeva MV, Gratton A, Giros B et al. A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal. LID – 10.7554/eLife.05105 [doi] LID - e05105. (2050-084X (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.7554/eLife.05105"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC4337656"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="25546305"/></mixed-citation></ref><ref id="CR79"><label>79.</label><mixed-citation><named-content content-type="citation-string">Pizzagalli DA, Berretta S, Wooten D, Goer F, Pilobello KT, Kumar P et al. Assessment of Striatal Dopamine Transporter Binding in Individuals With Major Depressive Disorder: In Vivo Positron Emission Tomography and Postmortem Evidence. (2168–6238 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1001/jamapsychiatry.2019.0801"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6495358"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31042280"/></mixed-citation></ref><ref id="CR80"><label>80.</label><mixed-citation><named-content content-type="citation-string">Oishi Y, Lazarus M. The control of sleep and wakefulness by mesolimbic dopamine systems. (1872–8111 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.neures.2017.04.008"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28434991"/></mixed-citation></ref><ref id="CR81"><label>81.</label><mixed-citation><named-content content-type="citation-string">Monti JM, Monti D. The involvement of dopamine in the modulation of sleep and waking. (1087 – 0792 (Print)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.smrv.2006.08.003"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="17275369"/></mixed-citation></ref><ref id="CR82"><label>82.</label><mixed-citation><named-content content-type="citation-string">Lorenzetti V, Solowij N, Yücel M. The Role of Cannabinoids in Neuroanatomic Alterations in Cannabis Users. (1873–2402 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.biopsych.2015.11.013"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="26858212"/></mixed-citation></ref><ref id="CR83"><label>83.</label><mixed-citation><named-content content-type="citation-string">Volkow ND, Hampson AJ, Baler RD. Don’t Worry, Be Happy: Endocannabinoids and Cannabis at the Intersection of Stress and Reward. (1545–4304 (Electronic)).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1146/annurev-pharmtox-010716-104615"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27618739"/></mixed-citation></ref><ref id="CR84"><label>84.</label><mixed-citation id="mc-CR84"><named-content content-type="citation-string">Amaral C, Carvalho C, Scaranelo A, Chapman K, Chatkin J, Ferreira I. Cannabis and sleep disorders: not ready for prime time? A qualitative scoping review. J Clin Sleep Med. 2023;19(5):975–90.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.5664/jcsm.10428"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10152356"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36692176"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Amaral C, Carvalho C, Scaranelo A, Chapman K, Chatkin J, Ferreira I. Cannabis and sleep disorders: not ready for prime time? A qualitative scoping review. J Clin Sleep Med. 2023;19(5):975–90."/></mixed-citation></ref><ref id="CR85"><label>85.</label><mixed-citation id="mc-CR85"><named-content content-type="citation-string">Velzeboer R, Malas A, Boerkoel P, Cullen K, Hawkins M, Roesler J, et al. Cannabis dosing and administration for sleep: a systematic review. Sleep. 2022;45(11):zsac218.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/sleep/zsac218"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36107800"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Velzeboer R, Malas A, Boerkoel P, Cullen K, Hawkins M, Roesler J, et al. Cannabis dosing and administration for sleep: a systematic review. Sleep. 2022;45(11):zsac218."/></mixed-citation></ref><ref id="CR86"><label>86.</label><mixed-citation id="mc-CR86"><named-content content-type="citation-string">Edwards D, Filbey FM. Are Sweet Dreams Made of These? Understanding the Relationship Between Sleep and Cannabis Use. Cannabis Cannabinoid Res. 2021;6(6):462–73.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1089/can.2020.0174"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC8713269"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="34143657"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Edwards D, Filbey FM. Are Sweet Dreams Made of These? Understanding the Relationship Between Sleep and Cannabis Use. Cannabis Cannabinoid Res. 2021;6(6):462–73."/></mixed-citation></ref><ref id="CR87"><label>87.</label><mixed-citation id="mc-CR87"><named-content content-type="citation-string">Meneo D, Bacaro V, Curati S, Russo PM, Martoni M, Gelfo F, et al. A systematic review and meta-analysis of the association between young adults’ sleep habits and substance use, with a focus on self-medication behaviours. Sleep Med Rev. 2023;70:101792.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.smrv.2023.101792"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="37269785"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Meneo D, Bacaro V, Curati S, Russo PM, Martoni M, Gelfo F, et al. A systematic review and meta-analysis of the association between young adults’ sleep habits and substance use, with a focus on self-medication behaviours. Sleep Med Rev. 2023;70:101792."/></mixed-citation></ref><ref id="CR88"><label>88.</label><mixed-citation id="mc-CR88"><named-content content-type="citation-string">De Feo G, Case AA, Crawford GB, Hui D, To J, Sbrana A, et al. Multinational Association of Supportive Care in Cancer (MASCC) guidelines: cannabis for psychological symptoms including insomnia, anxiety, and depression. Support Care Cancer. 2023;31(3):176.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s00520-023-07628-3"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36809575"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="De Feo G, Case AA, Crawford GB, Hui D, To J, Sbrana A, et al. Multinational Association of Supportive Care in Cancer (MASCC) guidelines: cannabis for psychological symptoms including insomnia, anxiety, and depression. Support Care Cancer. 2023;31(3):176."/></mixed-citation></ref><ref id="CR89"><label>89.</label><mixed-citation><named-content content-type="citation-string">AminiLari M, Wang L, Neumark S, Adli T, Couban RJ, Giangregorio A et al. Medical cannabis and cannabinoids for impaired sleep: a systematic review and meta-analysis of randomized clinical trials. Sleep. 2022;45(2).</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/sleep/zsab234"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="34546363"/></mixed-citation></ref><ref id="CR90"><label>90.</label><mixed-citation id="mc-CR90"><named-content content-type="citation-string">Lavender I, McGregor IS, Suraev A, Grunstein RR, Hoyos CM. Cannabinoids, Insomnia, and Other Sleep Disorders. Chest. 2022;162(2):452–65.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.chest.2022.04.151"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35537535"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Lavender I, McGregor IS, Suraev A, Grunstein RR, Hoyos CM. Cannabinoids, Insomnia, and Other Sleep Disorders. Chest. 2022;162(2):452–65."/></mixed-citation></ref><ref id="CR91"><label>91.</label><mixed-citation><named-content content-type="citation-string">Suraev AS, Marshall NS, Vandrey R, McCartney D, Benson MJ, McGregor IS et al. Cannabinoid therapies in the management of sleep disorders: a systematic review of preclinical and clinical studies. Sleep Med Rev. 2020:101339.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.smrv.2020.101339"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="32603954"/></mixed-citation></ref><ref id="CR92"><label>92.</label><mixed-citation id="mc-CR92"><named-content content-type="citation-string">Narayan AJ, Downey LA, Manning B, Hayley AC. Cannabinoid treatments for anxiety: A systematic review and consideration of the impact of sleep disturbance. Neurosci Biobehav Rev. 2022;143:104941.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.neubiorev.2022.104941"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36370842"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Narayan AJ, Downey LA, Manning B, Hayley AC. Cannabinoid treatments for anxiety: A systematic review and consideration of the impact of sleep disturbance. Neurosci Biobehav Rev. 2022;143:104941."/></mixed-citation></ref><ref id="CR93"><label>93.</label><mixed-citation id="mc-CR93"><named-content content-type="citation-string">Levac D, Colquhoun H, O’brien KK. Scoping studies: advancing the methodology. Implement Sci. 2010;5:1–9.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/1748-5908-5-69"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC2954944"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="20854677"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Levac D, Colquhoun H, O’brien KK. Scoping studies: advancing the methodology. Implement Sci. 2010;5:1–9."/></mixed-citation></ref><ref id="CR94"><label>94.</label><mixed-citation id="mc-CR94"><named-content content-type="citation-string">Hasin D, Walsh C. Cannabis use, cannabis use disorder, and comorbid psychiatric illness: a narrative review. J Clin Med. 2020;10(1):15.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.3390/jcm10010015"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7793504"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="33374666"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Hasin D, Walsh C. Cannabis use, cannabis use disorder, and comorbid psychiatric illness: a narrative review. J Clin Med. 2020;10(1):15."/></mixed-citation></ref><ref id="CR95"><label>95.</label><mixed-citation id="mc-CR95"><named-content content-type="citation-string">Sideli L, Quigley H, La Cascia C, Murray RM. Cannabis use and the risk for psychosis and affective disorders. J dual diagnosis. 2020;16(1):22–42.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/15504263.2019.1674991"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31647377"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Sideli L, Quigley H, La Cascia C, Murray RM. Cannabis use and the risk for psychosis and affective disorders. J dual diagnosis. 2020;16(1):22–42."/></mixed-citation></ref><ref id="CR96"><label>96.</label><mixed-citation id="mc-CR96"><named-content content-type="citation-string">Moltke J, Hindocha C. Reasons for cannabidiol use: a cross-sectional study of CBD users, focusing on self-perceived stress, anxiety, and sleep problems. J Cannabis Res. 2021;3(1):5.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s42238-021-00061-5"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7893882"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="33602344"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Moltke J, Hindocha C. Reasons for cannabidiol use: a cross-sectional study of CBD users, focusing on self-perceived stress, anxiety, and sleep problems. J Cannabis Res. 2021;3(1):5."/></mixed-citation></ref><ref id="CR97"><label>97.</label><mixed-citation id="mc-CR97"><named-content content-type="citation-string">Berey BL, Meisel S, Pielech M, Parnes JE, Treloar Padovano H, Miranda R. A test of competing mediators linking trouble sleeping to cannabis use in adolescents and emerging adults. Exp Clin Psychopharmacol. 2024;32(3):316–28.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/pha0000693"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC11098684"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="38127518"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Berey BL, Meisel S, Pielech M, Parnes JE, Treloar Padovano H, Miranda R. A test of competing mediators linking trouble sleeping to cannabis use in adolescents and emerging adults. Exp Clin Psychopharmacol. 2024;32(3):316–28."/></mixed-citation></ref><ref id="CR98"><label>98.</label><mixed-citation id="mc-CR98"><named-content content-type="citation-string">Buysse DJ, Reynolds CF III, Monk TH, Berman SR, Kupfer DJ. The Pittsburgh Sleep Quality Index: a new instrument for psychiatric practice and research. Psychiatry Res. 1989;28(2):193–213.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/0165-1781(89)90047-4"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="2748771"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Buysse DJ, Reynolds CF III, Monk TH, Berman SR, Kupfer DJ. The Pittsburgh Sleep Quality Index: a new instrument for psychiatric practice and research. Psychiatry Res. 1989;28(2):193–213."/></mixed-citation></ref><ref id="CR99"><label>99.</label><mixed-citation id="mc-CR99"><named-content content-type="citation-string">Bastien CH, Vallières A, Morin CM. Validation of the Insomnia Severity Index as an outcome measure for insomnia research. Sleep Med. 2001;2(4):297–307.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/s1389-9457(00)00065-4"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="11438246"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Bastien CH, Vallières A, Morin CM. Validation of the Insomnia Severity Index as an outcome measure for insomnia research. Sleep Med. 2001;2(4):297–307."/></mixed-citation></ref><ref id="CR100"><label>100.</label><mixed-citation id="mc-CR100"><named-content content-type="citation-string">Martin EL, Strickland JC, Schlienz NJ, Munson J, Jackson H, Bonn-Miller MO, et al. Antidepressant and Anxiolytic Effects of Medicinal Cannabis Use in an Observational Trial. Front Psychiatry. 2021;12:729800.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.3389/fpsyt.2021.729800"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC8458732"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="34566726"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Martin EL, Strickland JC, Schlienz NJ, Munson J, Jackson H, Bonn-Miller MO, et al. Antidepressant and Anxiolytic Effects of Medicinal Cannabis Use in an Observational Trial. Front Psychiatry. 2021;12:729800."/></mixed-citation></ref><ref id="CR101"><label>101.</label><mixed-citation id="mc-CR101"><named-content content-type="citation-string">Bidwell L, Sznitman S, Martin-Willett R, Hitchcock L. Daily associations with cannabis use and sleep quality in anxious cannabis users. Behav sleep Med. 2024;22(2):150–67.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/15402002.2023.2217969"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10687319"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="37255232"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Bidwell L, Sznitman S, Martin-Willett R, Hitchcock L. Daily associations with cannabis use and sleep quality in anxious cannabis users. Behav sleep Med. 2024;22(2):150–67."/></mixed-citation></ref><ref id="CR102"><label>102.</label><mixed-citation id="mc-CR102"><named-content content-type="citation-string">Sznitman SR, Martin-Willett R, Ma W, Karoly HC, Bidwell LC. Daily diary study of associations between alcohol, cannabis, co-use and sleep quality in individuals with intentions to use cannabis to cope with anxiety. Drug Alcohol Rev. 2024;43(2):501–11.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1111/dar.13778"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10922432"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="37985016"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Sznitman SR, Martin-Willett R, Ma W, Karoly HC, Bidwell LC. Daily diary study of associations between alcohol, cannabis, co-use and sleep quality in individuals with intentions to use cannabis to cope with anxiety. Drug Alcohol Rev. 2024;43(2):501–11."/></mixed-citation></ref><ref id="CR103"><label>103.</label><mixed-citation id="mc-CR103"><named-content content-type="citation-string">Ergisi M, Erridge S, Harris M, Kawka M, Nimalan D, Salazar O, et al. UK Medical Cannabis Registry: an analysis of clinical outcomes of medicinal cannabis therapy for generalized anxiety disorder. Expert Rev Clin Pharmacol. 2022;15(4):487–95.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/17512433.2022.2020640"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="34937473"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Ergisi M, Erridge S, Harris M, Kawka M, Nimalan D, Salazar O, et al. UK Medical Cannabis Registry: an analysis of clinical outcomes of medicinal cannabis therapy for generalized anxiety disorder. Expert Rev Clin Pharmacol. 2022;15(4):487–95."/></mixed-citation></ref><ref id="CR104"><label>104.</label><mixed-citation id="mc-CR104"><named-content content-type="citation-string">Murphy M, Erridge S, Holvey C, Coomber R, Rucker JJ, Sodergren MH. A cohort study comparing the effects of medical cannabis for anxiety patients with and without comorbid sleep disturbance. Neuropsychopharmacol Rep. 2024;44(1):129–42.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1002/npr2.12407"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10932782"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="38155535"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Murphy M, Erridge S, Holvey C, Coomber R, Rucker JJ, Sodergren MH. A cohort study comparing the effects of medical cannabis for anxiety patients with and without comorbid sleep disturbance. Neuropsychopharmacol Rep. 2024;44(1):129–42."/></mixed-citation></ref><ref id="CR105"><label>105.</label><mixed-citation id="mc-CR105"><named-content content-type="citation-string">Rifkin-Zybutz R, Erridge S, Holvey C, Coomber R, Gaffney J, Lawn W, et al. Clinical outcome data of anxiety patients treated with cannabis-based medicinal products in the United Kingdom: a cohort study from the UK Medical Cannabis Registry. Psychopharmacology. 2023;240(8):1735–45.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s00213-023-06399-3"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10349732"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="37314478"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Rifkin-Zybutz R, Erridge S, Holvey C, Coomber R, Gaffney J, Lawn W, et al. Clinical outcome data of anxiety patients treated with cannabis-based medicinal products in the United Kingdom: a cohort study from the UK Medical Cannabis Registry. Psychopharmacology. 2023;240(8):1735–45."/></mixed-citation></ref><ref id="CR106"><label>106.</label><mixed-citation id="mc-CR106"><named-content content-type="citation-string">Mangoo S, Erridge S, Holvey C, Coomber R, Barros DAR, Bhoskar U, et al. Assessment of clinical outcomes of medicinal cannabis therapy for depression: analysis from the UK Medical Cannabis Registry. Expert Rev Neurother. 2022;22(11–12):995–1008.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/14737175.2022.2161894"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36573268"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Mangoo S, Erridge S, Holvey C, Coomber R, Barros DAR, Bhoskar U, et al. Assessment of clinical outcomes of medicinal cannabis therapy for depression: analysis from the UK Medical Cannabis Registry. Expert Rev Neurother. 2022;22(11–12):995–1008."/></mixed-citation></ref><ref id="CR107"><label>107.</label><mixed-citation id="mc-CR107"><named-content content-type="citation-string">Barbotin B, Hoertel N, Olfson M, Blanco C, Sanchez-Rico M, Lejoyeux M, et al. Sleep complaints among adults with major depressive episode are associated with increased risk of incident psychiatric disorders: Results from a population-based 3-year prospective study. J Clin Psychiatry. 2022;84(1):44741.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.4088/JCP.21m14236"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36541815"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Barbotin B, Hoertel N, Olfson M, Blanco C, Sanchez-Rico M, Lejoyeux M, et al. Sleep complaints among adults with major depressive episode are associated with increased risk of incident psychiatric disorders: Results from a population-based 3-year prospective study. J Clin Psychiatry. 2022;84(1):44741."/></mixed-citation></ref><ref id="CR108"><label>108.</label><mixed-citation id="mc-CR108"><named-content content-type="citation-string">Kuhathasan N, Minuzzi L, MacKillop J, Frey BN. An investigation of cannabis use for insomnia in depression and anxiety in a naturalistic sample. BMC Psychiatry. 2022;22(1):303.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s12888-022-03948-6"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC9052466"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35484520"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Kuhathasan N, Minuzzi L, MacKillop J, Frey BN. An investigation of cannabis use for insomnia in depression and anxiety in a naturalistic sample. BMC Psychiatry. 2022;22(1):303."/></mixed-citation></ref><ref id="CR109"><label>109.</label><mixed-citation id="mc-CR109"><named-content content-type="citation-string">Tervo-Clemmens B, Schmitt W, Wheeler G, Cooke ME, Schuster RM, Hickey S, et al. Cannabis use and sleep quality in daily life: An electronic daily diary study of adults starting cannabis for health concerns. Drug Alcohol Depend. 2023;243:109760.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2022.109760"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10015315"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36638745"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Tervo-Clemmens B, Schmitt W, Wheeler G, Cooke ME, Schuster RM, Hickey S, et al. Cannabis use and sleep quality in daily life: An electronic daily diary study of adults starting cannabis for health concerns. Drug Alcohol Depend. 2023;243:109760."/></mixed-citation></ref><ref id="CR110"><label>110.</label><mixed-citation id="mc-CR110"><named-content content-type="citation-string">Coelho J, Montagni I, Micoulaud-Franchi J-A, Plancoulaine S, Tzourio C. Study of the association between cannabis use and sleep disturbances in a large sample of University students. Psychiatry Res. 2023;322:115096.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.psychres.2023.115096"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36842936"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Coelho J, Montagni I, Micoulaud-Franchi J-A, Plancoulaine S, Tzourio C. Study of the association between cannabis use and sleep disturbances in a large sample of University students. Psychiatry Res. 2023;322:115096."/></mixed-citation></ref><ref id="CR111"><label>111.</label><mixed-citation id="mc-CR111"><named-content content-type="citation-string">Dokkedal-Silva V, Fernandes GL, Morelhao PK, Pires GN, Rowlett JK, Galduroz JCF, et al. Sleep, psychiatric and socioeconomic factors associated with substance use in a large population sample: A cross-sectional study. Pharmacol Biochem Behav. 2021;210:173274.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.pbb.2021.173274"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="34547353"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Dokkedal-Silva V, Fernandes GL, Morelhao PK, Pires GN, Rowlett JK, Galduroz JCF, et al. Sleep, psychiatric and socioeconomic factors associated with substance use in a large population sample: A cross-sectional study. Pharmacol Biochem Behav. 2021;210:173274."/></mixed-citation></ref><ref id="CR112"><label>112.</label><mixed-citation id="mc-CR112"><named-content content-type="citation-string">Yau JC, Yu SM, Panenka WJ, Pearce H, Gicas KM, Procyshyn RM, et al. Characterization of mental health in cannabis dispensary users, using structured clinical interviews and standardized assessment instruments. BMC Psychiatry. 2019;19(1):335.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s12888-019-2324-z"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6825348"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31675939"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Yau JC, Yu SM, Panenka WJ, Pearce H, Gicas KM, Procyshyn RM, et al. Characterization of mental health in cannabis dispensary users, using structured clinical interviews and standardized assessment instruments. BMC Psychiatry. 2019;19(1):335."/></mixed-citation></ref><ref id="CR113"><label>113.</label><mixed-citation id="mc-CR113"><named-content content-type="citation-string">Bapir L, Erridge S, Nicholas M, Pillai M, Dalavaye N, Holvey C, et al. Comparing the effects of medical cannabis for chronic pain patients with and without co-morbid anxiety: A cohort study. Expert Rev Neurother. 2023;23(3):281–95.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/14737175.2023.2181696"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="36803620"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Bapir L, Erridge S, Nicholas M, Pillai M, Dalavaye N, Holvey C, et al. Comparing the effects of medical cannabis for chronic pain patients with and without co-morbid anxiety: A cohort study. Expert Rev Neurother. 2023;23(3):281–95."/></mixed-citation></ref><ref id="CR114"><label>114.</label><mixed-citation id="mc-CR114"><named-content content-type="citation-string">Montebello M, Jefferies M, Mills L, Bruno R, Copeland J, McGregor I, et al. Mood, sleep and pain comorbidity outcomes in cannabis dependent patients: Findings from a nabiximols versus placebo randomised controlled trial. Drug Alcohol Depend. 2022;234:109388.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2022.109388"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35316689"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Montebello M, Jefferies M, Mills L, Bruno R, Copeland J, McGregor I, et al. Mood, sleep and pain comorbidity outcomes in cannabis dependent patients: Findings from a nabiximols versus placebo randomised controlled trial. Drug Alcohol Depend. 2022;234:109388."/></mixed-citation></ref><ref id="CR115"><label>115.</label><mixed-citation><named-content content-type="citation-string">Walsh CA, Euler E, Do LA, Zheng A, Eckel SP, Harlow BL et al. Cannabis use and sleep problems among young adults by mental health status: A prospective cohort study. Addiction. 2024.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1111/add.16705"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC11908928"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="39476498"/></mixed-citation></ref><ref id="CR116"><label>116.</label><mixed-citation id="mc-CR116"><named-content content-type="citation-string">Livingston NR, Hetelekides E, Bravo AJ, Looby A, Stimulant N, Prevalence Study T. Negative Affect Regulation and Marijuana Use in College Students: Evaluating the Mediating Roles of Coping and Sleep Motives. J Psychoact Drugs. 2023;55(2):203–12.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/02791072.2022.2054747"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC9512938"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35341474"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Livingston NR, Hetelekides E, Bravo AJ, Looby A, Stimulant N, Prevalence Study T. Negative Affect Regulation and Marijuana Use in College Students: Evaluating the Mediating Roles of Coping and Sleep Motives. J Psychoact Drugs. 2023;55(2):203–12."/></mixed-citation></ref><ref id="CR117"><label>117.</label><mixed-citation id="mc-CR117"><named-content content-type="citation-string">Yurasek AM, Miller MB, Pritschmann RK, Curtis AF, McCrae CS. Negative mood as a mediator of the association between insomnia severity and marijuana problems in college students. J Sleep Res. 2020;29(4):e12985.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1111/jsr.12985"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7387201"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31997499"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Yurasek AM, Miller MB, Pritschmann RK, Curtis AF, McCrae CS. Negative mood as a mediator of the association between insomnia severity and marijuana problems in college students. J Sleep Res. 2020;29(4):e12985."/></mixed-citation></ref><ref id="CR118"><label>118.</label><mixed-citation id="mc-CR118"><named-content content-type="citation-string">Group WAW. The alcohol, smoking and substance involvement screening test (ASSIST): development, reliability and feasibility. Addiction. 2002;97(9):1183–94.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1046/j.1360-0443.2002.00185.x"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="12199834"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Group WAW. The alcohol, smoking and substance involvement screening test (ASSIST): development, reliability and feasibility. Addiction. 2002;97(9):1183–94."/></mixed-citation></ref><ref id="CR119"><label>119.</label><mixed-citation id="mc-CR119"><named-content content-type="citation-string">Adamson SJ, Kay-Lambkin FJ, Baker AL, Lewin TJ, Thornton L, Kelly BJ, et al. An improved brief measure of cannabis misuse: the Cannabis Use Disorders Identification Test-Revised (CUDIT-R). Drug Alcohol Depend. 2010;110(1–2):137–43.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2010.02.017"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="20347232"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Adamson SJ, Kay-Lambkin FJ, Baker AL, Lewin TJ, Thornton L, Kelly BJ, et al. An improved brief measure of cannabis misuse: the Cannabis Use Disorders Identification Test-Revised (CUDIT-R). Drug Alcohol Depend. 2010;110(1–2):137–43."/></mixed-citation></ref><ref id="CR120"><label>120.</label><mixed-citation id="mc-CR120"><named-content content-type="citation-string">Ohayon MM, Carskadon MA, Guilleminault C, Vitiello MV. Meta-analysis of quantitative sleep parameters from childhood to old age in healthy individuals: developing normative sleep values across the human lifespan. Sleep. 2004;27(7):1255–73.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/sleep/27.7.1255"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="15586779"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Ohayon MM, Carskadon MA, Guilleminault C, Vitiello MV. Meta-analysis of quantitative sleep parameters from childhood to old age in healthy individuals: developing normative sleep values across the human lifespan. Sleep. 2004;27(7):1255–73."/></mixed-citation></ref><ref id="CR121"><label>121.</label><mixed-citation id="mc-CR121"><named-content content-type="citation-string">Metrik J, Bassett SS, Aston ER, Jackson KM, Borsari B. Medicinal versus recreational cannabis use among returning veterans. Translational issues Psychol Sci. 2018;4(1):6.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/tps0000133"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6037171"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30003119"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Metrik J, Bassett SS, Aston ER, Jackson KM, Borsari B. Medicinal versus recreational cannabis use among returning veterans. Translational issues Psychol Sci. 2018;4(1):6."/></mixed-citation></ref><ref id="CR122"><label>122.</label><mixed-citation id="mc-CR122"><named-content content-type="citation-string">Buysse DJ, Ancoli-Israel S, Edinger JD, Lichstein KL, Morin CM. Recommendations for a standard research assessment of insomnia. Sleep. 2006;29(9):1155–73.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/sleep/29.9.1155"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="17040003"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Buysse DJ, Ancoli-Israel S, Edinger JD, Lichstein KL, Morin CM. Recommendations for a standard research assessment of insomnia. Sleep. 2006;29(9):1155–73."/></mixed-citation></ref><ref id="CR123"><label>123.</label><mixed-citation id="mc-CR123"><named-content content-type="citation-string">Huhn AS, Dunn KE, Ellis JD, Sholler DJ, Tabaschek P, Burns R, et al. Objective sleep outcomes in randomized-controlled trials in persons with substance use disorders: a systematic review. Drug Alcohol Depend. 2022;237:109509.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2022.109509"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35660222"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Huhn AS, Dunn KE, Ellis JD, Sholler DJ, Tabaschek P, Burns R, et al. Objective sleep outcomes in randomized-controlled trials in persons with substance use disorders: a systematic review. Drug Alcohol Depend. 2022;237:109509."/></mixed-citation></ref><ref id="CR124"><label>124.</label><mixed-citation id="mc-CR124"><named-content content-type="citation-string">Huhn AS, Ellis JD, Dunn KE, Sholler DJ, Tabaschek P, Burns R, et al. Patient-reported sleep outcomes in randomized-controlled trials in persons with substance use disorders: A systematic review. Drug Alcohol Depend. 2022;237:109508.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2022.109508"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="35660223"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Huhn AS, Ellis JD, Dunn KE, Sholler DJ, Tabaschek P, Burns R, et al. Patient-reported sleep outcomes in randomized-controlled trials in persons with substance use disorders: A systematic review. Drug Alcohol Depend. 2022;237:109508."/></mixed-citation></ref><ref id="CR125"><label>125.</label><mixed-citation id="mc-CR125"><named-content content-type="citation-string">Prince MA, Conner BT, Pearson MR. Quantifying cannabis: A field study of marijuana quantity estimation. Psychol Addict Behav. 2018;32(4):426.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1037/adb0000370"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6013381"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="29771542"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Prince MA, Conner BT, Pearson MR. Quantifying cannabis: A field study of marijuana quantity estimation. Psychol Addict Behav. 2018;32(4):426."/></mixed-citation></ref><ref id="CR126"><label>126.</label><mixed-citation id="mc-CR126"><named-content content-type="citation-string">Freeman TP, Lorenzetti V. Standard THC units’: a proposal to standardize dose across all cannabis products and methods of administration. Addiction. 2020;115(7):1207–16.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1111/add.14842"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31606008"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Freeman TP, Lorenzetti V. Standard THC units’: a proposal to standardize dose across all cannabis products and methods of administration. Addiction. 2020;115(7):1207–16."/></mixed-citation></ref><ref id="CR127"><label>127.</label><mixed-citation id="mc-CR127"><named-content content-type="citation-string">Boisvert EE, Bae D, Pang RD, Davis JP, Kelley-Quon LI, Barrington-Trimis JL, et al. Subjective effects of combustible, vaporized, and edible cannabis: Results from a survey of adolescent cannabis users. Drug Alcohol Depend. 2020;206:107716.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2019.107716"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC10408718"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31718923"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Boisvert EE, Bae D, Pang RD, Davis JP, Kelley-Quon LI, Barrington-Trimis JL, et al. Subjective effects of combustible, vaporized, and edible cannabis: Results from a survey of adolescent cannabis users. Drug Alcohol Depend. 2020;206:107716."/></mixed-citation></ref><ref id="CR128"><label>128.</label><mixed-citation id="mc-CR128"><named-content content-type="citation-string">Childs E, Lutz JA, de Wit H. Dose-related effects of delta-9-THC on emotional responses to acute psychosocial stress. Drug Alcohol Depend. 2017;177:136–44.
</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.drugalcdep.2017.03.030"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6349031"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28599212"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="Childs E, Lutz JA, de Wit H. Dose-related effects of delta-9-THC on emotional responses to acute psychosocial stress. Drug Alcohol Depend. 2017;177:136–44."/></mixed-citation></ref></ref-list></sec></sec><sec id="_ad93_" xml:lang="en" sec-type="associated-data" disp-level="1"><title>Associated Data</title><sec id="_adda93_" xml:lang="en" sec-type="data-availability-statement" disp-level="2"><title>Data Availability Statement</title><p>No datasets were generated or analysed during the current study.</p></sec></sec></body></article>