<?xml version="1.0" encoding="UTF-8"?><article xml:lang="en" article-type="research-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>European Journal of Trauma and Emergency Surgery</journal-title><abbrev-journal-title>Eur J Trauma Emerg Surg</abbrev-journal-title></journal-title-group></journal-meta><article-meta><article-id pub-id-type="pmcid">PMC9712342</article-id><article-id pub-id-type="pmcaid">9712342</article-id><article-id pub-id-type="pmcaiid">9712342</article-id><article-id pub-id-type="pmid">35644894</article-id><article-id pub-id-type="doi">10.1007/s00068-022-01993-0</article-id><title-group><article-title>Epidemiology, classification and treatment of patella fractures: an observational study of 3194 fractures from the Swedish Fracture Register</article-title></title-group><contrib-group content-type="author"><contrib><name name-style="western"><surname>Kruse</surname><given-names initials="M">Mark</given-names></name><xref ref-type="aff" rid="Aff1">1</xref><xref ref-type="author-notes" rid="_fncrsp93pmc__">✉</xref></contrib><contrib><name name-style="western"><surname>Wolf</surname><given-names initials="O">Olof</given-names></name><xref ref-type="aff" rid="Aff2">2</xref></contrib><contrib><name name-style="western"><surname>Mukka</surname><given-names initials="S">Sebastian</given-names></name><xref ref-type="aff" rid="Aff1">1</xref></contrib><contrib><name name-style="western"><surname>Brüggemann</surname><given-names initials="A">Anders</given-names></name><xref ref-type="aff" rid="Aff2">2</xref></contrib></contrib-group><aff id="Aff1"><label>1</label>Department of Surgical and Perioperative Sciences at Umeå University, Umeå, Sweden </aff><aff id="Aff2"><label>2</label>Section of Orthopaedics, Department of Surgical Sciences, Uppsala University, Uppsala, Sweden </aff><author-notes><fn id="_fncrsp93pmc__"><label>✉</label><p>Corresponding author.</p></fn></author-notes><pub-date><day>30</day><month>5</month><year>2022</year></pub-date><volume>48</volume><issue>6</issue><fpage>4727</fpage><page-range>4727–4734</page-range><pub-history><event event-type="pmc-release"><date><day>2</day><month>12</month><year>2022</year></date></event></pub-history><permissions><copyright-statement>© The Author(s) 2022</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="68_2022_Article_1993.pdf" content-type="pmc-pdf"><?cloudpmc-path dba6/9712342/9dfc2e4980cc/68_2022_Article_1993.pdf?><?cloudpmc-bucket app?><?size 802427?></self-uri><abstract id="Abs1"><title>Abstract</title><sec id="sec1" disp-level="2"><title>Background</title><p id="Par1">Basic epidemiological data on patella fractures derived from large nationwide and multicenter studies are scarce. This observational register study describes patient epidemiology, fracture classification and treatment of patella fractures in adults in a Swedish population.</p></sec><sec id="sec2" disp-level="2"><title>Methods</title><p id="Par2">We conducted an observational study on data derived from the Swedish Fracture Register (SFR) on all patella fractures classified as non-periprosthetic and non-pathological, registered between 2014 and 2018 in individuals aged ≥ 18years. Epidemiological data on sex, age, side, seasonal variation, trauma mechanism, fracture classification (according to AO/OTA), and treatment were analyzed.</p></sec><sec id="sec3" disp-level="2"><title>Results</title><p id="Par3">3194 patella fractures were analyzed, occurring at a median age of 67 (range 19–100) years. 64% of all patients were female. Most fractures were caused by low-energy trauma, with 70% due to falling from a standing height. 1796 (56%) of the fractures were transverse compared to 845 (26%) vertical fractures. Most fractures (<italic>N</italic>=2148, 67%) were treated non-operatively. Operative treatment consisted mainly of Tension Band Wiring (TBW) performed in 774 (24%) patients.</p></sec><sec id="sec4" disp-level="2"><title>Conclusions</title><p id="Par4">Patella fractures mainly occur in elderly women (&gt; 65 years), commonly caused by low-energy trauma. The main treatment is non-operative (67%), except for transverse (AO/OTA C3) fractures. TBW remains the most used operative treatment of choice. These results may help health care providers, researchers and clinicians better understand the panorama of patella fractures in Sweden.</p></sec><sec id="sec5" disp-level="2"><title>Supplementary Information</title><p>The online version contains supplementary material available at 10.1007/s00068-022-01993-0.</p></sec><sec id="kwd-group1" xml:lang="en" sec-type="kwd-group" disp-level="2"><p><bold>Keywords:</bold> Patella fractures, Fracture epidemiology, Trauma mechanism, Fracture treatment, Swedish Fracture Register, Knee fracture</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 2021 Dec 16; Accepted 2022 May 1; Issue date 2022.</p></sec></notes></front><body><sec id="Sec1" disp-level="1"><title>Introduction</title><p id="Par5">The patella is a vital part of the biomechanical excursion of the extensor apparatus of the knee [<xref rid="CR1" ref-type="bibr">1</xref>]. A fractured patella can disrupt the extensor mechanism in combination with incongruent posterior articular surface and thus cause long-term complications, e.g., discomfort due to femoropatellar osteoarthritis [<xref rid="CR2" ref-type="bibr">2</xref>, <xref rid="CR3" ref-type="bibr">3</xref>]. The established treatment options depend on the underlying fracture pattern. They include non-operative treatment for vertical and undisplaced fractures, whereas operative treatment is mainly reserved for displaced fractures with a disrupted extensor mechanism [<xref rid="CR4" ref-type="bibr">4</xref>]. Operative treatment methods range from sutures and tension band wiring (TBW) to recently popularized plate fixation [<xref rid="CR5" ref-type="bibr">5</xref>]. Several case series report a high degree of secondary surgery, mainly implant removal due to prominent hardware [<xref rid="CR6" ref-type="bibr">6</xref>, <xref rid="CR7" ref-type="bibr">7</xref>]. There is also an increased risk of posttraumatic osteoarthritis and later need of total knee arthroplasty (TKA) [<xref rid="CR3" ref-type="bibr">3</xref>]. There are few large studies on the epidemiology of patella fractures [<xref rid="CR8" ref-type="bibr">8</xref>, <xref rid="CR9" ref-type="bibr">9</xref>].</p><p id="Par6">This study describes the injury mechanism, fracture classification, sex and age distribution, seasonal variation and primary treatment in patients with patella fracture using data derived from the Swedish Fracture Register (SFR).</p></sec><sec id="Sec2" disp-level="1"><title>Materials and methods</title><sec id="Sec3" disp-level="2"><title>Swedish fracture register</title><p id="Par7">This observational register study was based on data derived from the SFR, which was established in 2011. The SFR holds information on injury mechanism, fracture classification and treatment on an individual level based on the unique Swedish personal identity number (PIN). Several studies have found the registration in the SFR to have high accuracy and validity [<xref rid="CR10" ref-type="bibr">10</xref>–<xref rid="CR12" ref-type="bibr">12</xref>]. The coverage was 50% of orthopedic departments at the start of the study in 2014 and &gt; 80% at the end of the study in 2018. More than 330,000 fractures had been registered by the end of 2018. Information on peri-implant and periprosthetic fractures as well as open fractures according to the Gustilo–Anderson classification is available.</p></sec><sec id="Sec4" disp-level="2"><title>Patient selection</title><p id="Par8">All open and closed patellar fractures (ICD S82.00-01, AO/OTA 34A-C) registered in the SFR as sustained from January 1st, 2014 to December 31st, 2018 in patients aged ≥ 18 years were included. We excluded all periprosthetic fractures (Fig. <xref rid="Fig1" ref-type="fig">1</xref>).</p><fig id="Fig1" position="float"><?disp-level 3?><label>Fig. 1</label><caption><p>Flow diagram of patient selection process</p></caption><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="image" id="MO1" xlink:href="68_2022_1993_Fig1_HTML.jpg"><?cloudpmc-path blobs/dba6/9712342/d85f24bb8ee5/68_2022_1993_Fig1_HTML.jpg?><?cloudpmc-bucket cdn?><?image-server-status LOAD_COMPLETED?><?original-height 1353?><?original-width 1469?><?scaled-height 676?><?scaled-width 734?></graphic><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="thumb" xlink:href="68_2022_1993_Fig1_HTML.gif"><?cloudpmc-path blobs/dba6/9712342/637e4536f926/68_2022_1993_Fig1_HTML.gif?><?cloudpmc-bucket cdn?></graphic></alternatives></fig></sec><sec id="Sec5" disp-level="2"><title>Study variables</title><p id="Par9">The following variables were retrieved from the SFR: age, sex, date of injury, trauma mechanism, fracture classification including side, open/closed fractures and treatment. The injury mechanism was categorized as a simple fall, an unspecified fall, road traffic accident, or other cause. Classification of fractures according to AO [<xref rid="CR13" ref-type="bibr">13</xref>] included extra-articular fragment/avulsion (AO/OTA 34A1-2), vertical (lateral, medial; AO/OTA 34B1-2) and transverse (simple, multifragmentary, wedge; AO/OTA 34C1-3). Open fractures were classified according to Gustilo–Anderson [<xref rid="CR14" ref-type="bibr">14</xref>].</p><p id="Par10">Treatment was divided into non-operative or operative treatment. Operative treatment methods are further registered as TBW, screw fixation, plate fixation and combined fixation method. Non-operative treatment was not further specified.</p></sec><sec id="Sec6" disp-level="2"><title>Statistics</title><p id="Par11">Nominal variables are presented as proportions of all fractures and scale variables as medians with ranges. We used the R version 4.0.3 (R Core Team, Vienna, Austria) software package for statistical analyses.</p></sec><sec id="Sec7" disp-level="2"><title>Ethics</title><p id="Par12">The study was performed according to the updated version of the Helsinki declaration. Approval was given by the Swedish Ethical Review Authority (dnr:2015/509 and 2019/01106).</p></sec></sec><sec id="Sec8" disp-level="1"><title>Results</title><sec id="Sec9" disp-level="2"><title>Study subjects and descriptive data</title><p id="Par13">3302 patella fractures were extracted from the SFR (ICD-10 S82.00-01). After excluding peri-prosthetic fractures, the final sample comprised 3194 patients (Fig. <xref rid="Fig1" ref-type="fig">1</xref>). Median age was 67 (range 19–100) years. 64% of the patients were women with a median age of 70 (19–100) years and 36% were males with a median age of 59 (19–100) years (Table <xref rid="Tab1" ref-type="table">1</xref>). There was a peak in the elderly (&gt; 60 years) population for women with patella fractures compared to the slightly biconvex curve in men (Fig. <xref rid="Fig2" ref-type="fig">2</xref>). 70% of the fractures were caused by a simple fall. This proportion was higher in women: 75% of the women sustained their fracture due to a simple fall compared to 60% in men. In contrast, road traffic accidents (RTA) caused 4% of fractures in women and 13% in men (Table <xref rid="Tab2" ref-type="table">2</xref>) and 11% of the multifragmentary C3 fractures were caused by an RTA compared to 5% of the horizontal simple C1 fractures (Table <xref rid="Tab3" ref-type="table">3</xref>). 85% of the fractures were a result of low energy trauma (Table <xref rid="Tab1" ref-type="table">1</xref>). Only about 1 in 20 fractures was registered as sustained by high energy trauma.</p><table-wrap id="Tab1" position="float"><?disp-level 3?><label>Table 1</label><caption><p>Patient epidemiology and trauma mechanism</p></caption><table frame="hsides" rules="groups"><thead><tr><th align="left" colspan="1" rowspan="1"/><th align="left" colspan="1" rowspan="1">Female (<italic>N</italic> = 2039)</th><th align="left" colspan="1" rowspan="1">Male (<italic>N</italic> = 1155)</th><th align="left" colspan="1" rowspan="1">Overall (<italic>N</italic> = 3194)</th></tr></thead><tbody><tr><td align="left" colspan="1" rowspan="1">Age at injury</td><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/></tr><tr><td align="left" colspan="1" rowspan="1"> Median [min–max]</td><td align="left" colspan="1" rowspan="1">70.0 [19.0–100]</td><td align="left" colspan="1" rowspan="1">59.0 [19.0–100]</td><td align="left" colspan="1" rowspan="1">67.0 [19.0–100]</td></tr><tr><td align="left" colspan="1" rowspan="1">Side</td><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/></tr><tr><td align="left" colspan="1" rowspan="1"> Left</td><td align="left" colspan="1" rowspan="1">1068 (52.4%)</td><td align="left" colspan="1" rowspan="1">578 (50.0%)</td><td align="left" colspan="1" rowspan="1">1646 (51.5%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Right</td><td align="left" colspan="1" rowspan="1">971 (47.6%)</td><td align="left" colspan="1" rowspan="1">577 (50.0%)</td><td align="left" colspan="1" rowspan="1">1548 (48.5%)</td></tr><tr><td align="left" colspan="1" rowspan="1">Mechanism</td><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/></tr><tr><td align="left" colspan="1" rowspan="1"> Fall from height</td><td align="left" colspan="1" rowspan="1">167 (8.2%)</td><td align="left" colspan="1" rowspan="1">112 (9.7%)</td><td align="left" colspan="1" rowspan="1">279 (8.7%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Fall standing height</td><td align="left" colspan="1" rowspan="1">1530 (75.0%)</td><td align="left" colspan="1" rowspan="1">700 (60.6%)</td><td align="left" colspan="1" rowspan="1">2230 (69.8%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Road traffic accident</td><td align="left" colspan="1" rowspan="1">85 (4.2%)</td><td align="left" colspan="1" rowspan="1">155 (13.4%)</td><td align="left" colspan="1" rowspan="1">240 (7.5%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Other cause</td><td align="left" colspan="1" rowspan="1">105 (5.1%)</td><td align="left" colspan="1" rowspan="1">143 (12.4%)</td><td align="left" colspan="1" rowspan="1">248 (7.8%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Stress fracture</td><td align="left" colspan="1" rowspan="1">7 (0.3%)</td><td align="left" colspan="1" rowspan="1">9 (0.8%)</td><td align="left" colspan="1" rowspan="1">16 (0.5%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Unspecified fall</td><td align="left" colspan="1" rowspan="1">172 (8.4%)</td><td align="left" colspan="1" rowspan="1">89 (7.7%)</td><td align="left" colspan="1" rowspan="1">261 (8.2%)</td></tr><tr><td align="left" colspan="1" rowspan="1">Type</td><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/></tr><tr><td align="left" colspan="1" rowspan="1"> High energy</td><td align="left" colspan="1" rowspan="1">50 (2.5%)</td><td align="left" colspan="1" rowspan="1">130 (11.3%)</td><td align="left" colspan="1" rowspan="1">180 (5.6%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Low energy</td><td align="left" colspan="1" rowspan="1">1825 (89.5%)</td><td align="left" colspan="1" rowspan="1">902 (78.1%)</td><td align="left" colspan="1" rowspan="1">2727 (85.4%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Unknown</td><td align="left" colspan="1" rowspan="1">164 (8.0%)</td><td align="left" colspan="1" rowspan="1">123 (10.6%)</td><td align="left" colspan="1" rowspan="1">287 (9.0%)</td></tr></tbody></table></table-wrap><fig id="Fig2" position="float"><?disp-level 3?><label>Fig. 2</label><caption><p>Age distribution at injury</p></caption><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="image" id="MO2" xlink:href="68_2022_1993_Fig2_HTML.jpg"><?cloudpmc-path blobs/dba6/9712342/f94dce8a56a0/68_2022_1993_Fig2_HTML.jpg?><?cloudpmc-bucket cdn?><?image-server-status LOAD_COMPLETED?><?original-height 1068?><?original-width 1498?><?scaled-height 534?><?scaled-width 749?></graphic><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="thumb" xlink:href="68_2022_1993_Fig2_HTML.gif"><?cloudpmc-path blobs/dba6/9712342/62026cebb167/68_2022_1993_Fig2_HTML.gif?><?cloudpmc-bucket cdn?></graphic></alternatives></fig><table-wrap id="Tab2" position="float"><?disp-level 3?><label>Table 2</label><caption><p>AO/OTA classification</p></caption><table frame="hsides" rules="groups"><thead><tr><th align="left" colspan="1" rowspan="1"/><th align="left" colspan="1" rowspan="1">Female (<italic>N</italic> = 2039)</th><th align="left" colspan="1" rowspan="1">Male (<italic>N</italic> = 1155)</th><th align="left" colspan="1" rowspan="1">Overall (<italic>N</italic> = 3194)</th></tr></thead><tbody><tr><td align="left" colspan="1" rowspan="1">A1</td><td align="left" colspan="1" rowspan="1">268 (13.1%)</td><td align="left" colspan="1" rowspan="1">137 (11.9%)</td><td align="left" colspan="1" rowspan="1">405 (12.7%)</td></tr><tr><td align="left" colspan="1" rowspan="1">A2</td><td align="left" colspan="1" rowspan="1">56 (2.7%)</td><td align="left" colspan="1" rowspan="1">49 (4.2%)</td><td align="left" colspan="1" rowspan="1">105 (3.3%)</td></tr><tr><td align="left" colspan="1" rowspan="1">B1</td><td align="left" colspan="1" rowspan="1">349 (17.1%)</td><td align="left" colspan="1" rowspan="1">279 (24.2%)</td><td align="left" colspan="1" rowspan="1">628 (19.7%)</td></tr><tr><td align="left" colspan="1" rowspan="1">B2</td><td align="left" colspan="1" rowspan="1">132 (6.5%)</td><td align="left" colspan="1" rowspan="1">85 (7.4%)</td><td align="left" colspan="1" rowspan="1">217 (6.8%)</td></tr><tr><td align="left" colspan="1" rowspan="1">C1</td><td align="left" colspan="1" rowspan="1">682 (33.4%)</td><td align="left" colspan="1" rowspan="1">261 (22.6%)</td><td align="left" colspan="1" rowspan="1">943 (29.5%)</td></tr><tr><td align="left" colspan="1" rowspan="1">C2</td><td align="left" colspan="1" rowspan="1">234 (11.5%)</td><td align="left" colspan="1" rowspan="1">119 (10.3%)</td><td align="left" colspan="1" rowspan="1">353 (11.1%)</td></tr><tr><td align="left" colspan="1" rowspan="1">C3</td><td align="left" colspan="1" rowspan="1">296 (14.5%)</td><td align="left" colspan="1" rowspan="1">204 (17.7%)</td><td align="left" colspan="1" rowspan="1">500 (15.7%)</td></tr><tr><td align="left" colspan="1" rowspan="1">Unclassified</td><td align="left" colspan="1" rowspan="1">22 (1.1%)</td><td align="left" colspan="1" rowspan="1">21 (1.8%)</td><td align="left" colspan="1" rowspan="1">43 (1.3%)</td></tr></tbody></table></table-wrap><table-wrap id="Tab3" position="float"><?disp-level 3?><label>Table 3</label><caption><p>AO/OTA classification according to trauma mechanism</p></caption><table frame="hsides" rules="groups"><thead><tr><th align="left" rowspan="2" colspan="1"/><th align="left" colspan="1" rowspan="1">Avulsion</th><th align="left" colspan="1" rowspan="1">Extraarticular fragment</th><th align="left" colspan="1" rowspan="1">Vertical lateral</th><th align="left" colspan="1" rowspan="1">Vertical medial</th><th align="left" colspan="1" rowspan="1">Horizontal simple</th><th align="left" colspan="1" rowspan="1">Horizontal wedge</th><th align="left" colspan="1" rowspan="1">Horizontal multifragmentary</th><th align="left" colspan="1" rowspan="1">Not classified</th><th align="left" colspan="1" rowspan="1">Overall</th></tr><tr><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 405)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 105)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 628)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 217)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 943)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 353)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 500)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 43)</th><th align="left" colspan="1" rowspan="1">(<italic>N</italic> = 3194)</th></tr></thead><tbody><tr><td align="left" colspan="1" rowspan="1">Cause</td><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/><td align="left" colspan="1" rowspan="1"/></tr><tr><td align="left" colspan="1" rowspan="1"> Fall same level</td><td align="left" colspan="1" rowspan="1">269 (66.4%)</td><td align="left" colspan="1" rowspan="1">69 (65.7%)</td><td align="left" colspan="1" rowspan="1">428 (68.2%)</td><td align="left" colspan="1" rowspan="1">150 (69.1%)</td><td align="left" colspan="1" rowspan="1">692 (73.4%)</td><td align="left" colspan="1" rowspan="1">262 (74.2%)</td><td align="left" colspan="1" rowspan="1">339 (67.8%)</td><td align="left" colspan="1" rowspan="1">21 (48.8%)</td><td align="left" colspan="1" rowspan="1">2230 (69.8%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Fall from height</td><td align="left" colspan="1" rowspan="1">44 (10.9%)</td><td align="left" colspan="1" rowspan="1">8 (7.6%)</td><td align="left" colspan="1" rowspan="1">52 (8.3%)</td><td align="left" colspan="1" rowspan="1">14 (6.5%)</td><td align="left" colspan="1" rowspan="1">81 (8.6%)</td><td align="left" colspan="1" rowspan="1">29 (8.2%)</td><td align="left" colspan="1" rowspan="1">49 (9.8%)</td><td align="left" colspan="1" rowspan="1">2 (4.7%)</td><td align="left" colspan="1" rowspan="1">279 (8.7%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Unspecified Fall</td><td align="left" colspan="1" rowspan="1">28 (6.9%)</td><td align="left" colspan="1" rowspan="1">8 (7.6%)</td><td align="left" colspan="1" rowspan="1">71 (11.3%)</td><td align="left" colspan="1" rowspan="1">10 (4.6%)</td><td align="left" colspan="1" rowspan="1">72 (7.6%)</td><td align="left" colspan="1" rowspan="1">27 (7.6%)</td><td align="left" colspan="1" rowspan="1">37 (7.4%)</td><td align="left" colspan="1" rowspan="1">8 (18.6%)</td><td align="left" colspan="1" rowspan="1">261 (8.2%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Road traffic accident (RTA)</td><td align="left" colspan="1" rowspan="1">28 (6.9%)</td><td align="left" colspan="1" rowspan="1">9 (8.7%)</td><td align="left" colspan="1" rowspan="1">44 (7.2%)</td><td align="left" colspan="1" rowspan="1">26 (12.1%)</td><td align="left" colspan="1" rowspan="1">50 (5.3%)</td><td align="left" colspan="1" rowspan="1">22 (6.2%)</td><td align="left" colspan="1" rowspan="1">54 (10.8%)</td><td align="left" colspan="1" rowspan="1">3 (6.9%)</td><td align="left" colspan="1" rowspan="1">236 (7.3%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Exposure to external forces</td><td align="left" colspan="1" rowspan="1">21 (5.1%)</td><td align="left" colspan="1" rowspan="1">8 (7.7%)</td><td align="left" colspan="1" rowspan="1">18 (2.8%)</td><td align="left" colspan="1" rowspan="1">12 (5.5%)</td><td align="left" colspan="1" rowspan="1">24 (2.5%)</td><td align="left" colspan="1" rowspan="1">8 (2.3%)</td><td align="left" colspan="1" rowspan="1">15 (3.0%)</td><td align="left" colspan="1" rowspan="1">8 (18.7%)</td><td align="left" colspan="1" rowspan="1">114 (3.6%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Assault, legal intervention, operation of war</td><td align="left" colspan="1" rowspan="1">1 (0.2%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">1 (0.2%)</td><td align="left" colspan="1" rowspan="1">1 (0.5%)</td><td align="left" colspan="1" rowspan="1">2 (0.2%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">1 (0.2%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">6 (0.2%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Missing</td><td align="left" colspan="1" rowspan="1">14 (3.5%)</td><td align="left" colspan="1" rowspan="1">3 (2.9%)</td><td align="left" colspan="1" rowspan="1">14 (2.2%)</td><td align="left" colspan="1" rowspan="1">4 (1.8%)</td><td align="left" colspan="1" rowspan="1">22 (2.3%)</td><td align="left" colspan="1" rowspan="1">5 (1.4%)</td><td align="left" colspan="1" rowspan="1">5 (1.0%)</td><td align="left" colspan="1" rowspan="1">1 (2.3%)</td><td align="left" colspan="1" rowspan="1">68 (2.1%)</td></tr></tbody></table></table-wrap><p id="Par14">The injury was most often sustained in the patient’s home (29%), followed by public streets and other places (e.g., farming industries, government buildings and hospitals). For 32% of the fractures, the injury location was unspecified.</p></sec><sec id="Sec10" disp-level="2"><title>Seasonal variation</title><p id="Par15">More fractures occurred in the colder months (October–March), which was more pronounced in women (Fig. <xref rid="Fig3" ref-type="fig">3</xref>).</p><fig id="Fig3" position="float"><?disp-level 3?><label>Fig. 3</label><caption><p>Seasonal variation of patella fractures</p></caption><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="image" id="MO3" xlink:href="68_2022_1993_Fig3_HTML.jpg"><?cloudpmc-path blobs/dba6/9712342/211ab86fa795/68_2022_1993_Fig3_HTML.jpg?><?cloudpmc-bucket cdn?><?image-server-status LOAD_COMPLETED?><?original-height 1235?><?original-width 1774?><?scaled-height 494?><?scaled-width 709?></graphic><graphic xmlns:xlink="http://www.w3.org/1999/xlink" content-type="thumb" xlink:href="68_2022_1993_Fig3_HTML.gif"><?cloudpmc-path blobs/dba6/9712342/9323cc282a78/68_2022_1993_Fig3_HTML.gif?><?cloudpmc-bucket cdn?></graphic></alternatives></fig></sec><sec id="Sec11" disp-level="2"><title>Fracture classification</title><p id="Par16">16% of the patella fractures were A-type fractures, of which the majority were avulsion fractures (13%, Table <xref rid="Tab2" ref-type="table">2</xref>). The vertical B-type fractures accounted for 27% of all fractures, most located laterally (20%). The lateral vertical fractures occurred in 24% of the fractures in men compared to only 17% in women. More than half of all fractures were transverse C-type fractures (56%), with 30% simple transverse fractures. Women sustained more simple transverse fractures than men (33% versus 23%). The more comminuted C3 fractures were found in 16% of all patella fractures.</p></sec><sec id="Sec12" disp-level="2"><title>Treatment</title><p id="Par17">Two thirds of all patella fractures were treated non-operatively. Almost all A- and B-type fractures were treated non-operatively, except for 1 of 5 inferior pole avulsion fractures treated with fixation (Table <xref rid="Tab4" ref-type="table">4</xref>). For C-type fractures, half of the fractures were treated non-operatively. Operative treatment increased with increasing fracture complexity, with TBW being the preferred method in most cases (C1—35%; C2—43%; C3—45%). Plate fixation was rare and almost exclusively used in C3-type fractures. Combined fixation methods were used in up to 5% of the fractures in C2-type fractures.</p><table-wrap id="Tab4" position="float"><?disp-level 3?><label>Table 4</label><caption><p>Treatment of patella fractures according to AO/OTA classification</p></caption><table frame="hsides" rules="groups"><thead><tr><th align="left" colspan="1" rowspan="1"/><th align="left" colspan="1" rowspan="1">34-A1 (<italic>N</italic> = 405) 12.7%</th><th align="left" colspan="1" rowspan="1">34-A2 (<italic>N</italic> = 105)<break/>3.3%</th><th align="left" colspan="1" rowspan="1">34-B1 (<italic>N</italic> = 628)<break/>19.7%</th><th align="left" colspan="1" rowspan="1">34-B2 (<italic>N</italic> = 217)<break/>6.8%</th><th align="left" colspan="1" rowspan="1">34-C1 (<italic>N</italic> = 943)<break/>29.5%</th><th align="left" colspan="1" rowspan="1">34-C2 (<italic>N</italic> = 353)<break/>11.1%</th><th align="left" colspan="1" rowspan="1">34-C3 (<italic>N</italic> = 500)<break/>15.6%</th><th align="left" colspan="1" rowspan="1">Unclassified (<italic>N</italic> = 43)<break/>1.3%</th><th align="left" colspan="1" rowspan="1">Overall (<italic>N</italic> = 3194)</th></tr></thead><tbody><tr><td align="left" colspan="10" rowspan="1">Treatment</td></tr><tr><td align="left" colspan="1" rowspan="1"> Non operative</td><td align="left" colspan="1" rowspan="1">309 (76.3%)</td><td align="left" colspan="1" rowspan="1">89 (84.8%)</td><td align="left" colspan="1" rowspan="1">610 (97.1%)</td><td align="left" colspan="1" rowspan="1">196 (90.3%)</td><td align="left" colspan="1" rowspan="1">534 (56.6%)</td><td align="left" colspan="1" rowspan="1">164 (46.5%)</td><td align="left" colspan="1" rowspan="1">207 (41.4%)</td><td align="left" colspan="1" rowspan="1">29 (67.4%)</td><td align="left" colspan="1" rowspan="1">2138 (66.9%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Tension band wiring</td><td align="left" colspan="1" rowspan="1">59 (14.6%)</td><td align="left" colspan="1" rowspan="1">2 (1.9%)</td><td align="left" colspan="1" rowspan="1">2 (0.3%)</td><td align="left" colspan="1" rowspan="1">2 (0.9%)</td><td align="left" colspan="1" rowspan="1">326 (34.6%)</td><td align="left" colspan="1" rowspan="1">150 (42.5%)</td><td align="left" colspan="1" rowspan="1">227 (45.4%)</td><td align="left" colspan="1" rowspan="1">2 (4.7%)</td><td align="left" colspan="1" rowspan="1">770 (24.1%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Screw fixation</td><td align="left" colspan="1" rowspan="1">3 (0.7%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">3 (0.5%)</td><td align="left" colspan="1" rowspan="1">3 (1.4%)</td><td align="left" colspan="1" rowspan="1">9 (1.0%)</td><td align="left" colspan="1" rowspan="1">2 (0.6%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">1 (2.3%)</td><td align="left" colspan="1" rowspan="1">21 (0.7%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Plate fixation</td><td align="left" colspan="1" rowspan="1">1 (0.2%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">2 (0.3%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">3 (0.3%)</td><td align="left" colspan="1" rowspan="1">1 (0.3%)</td><td align="left" colspan="1" rowspan="1">16 (3.2%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">23 (0.7%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Combined fixation</td><td align="left" colspan="1" rowspan="1">16 (4.0%)</td><td align="left" colspan="1" rowspan="1">1 (1.0%)</td><td align="left" colspan="1" rowspan="1">2 (0.3%)</td><td align="left" colspan="1" rowspan="1">1 (0.5%)</td><td align="left" colspan="1" rowspan="1">24 (2.5%)</td><td align="left" colspan="1" rowspan="1">16 (4.5%)</td><td align="left" colspan="1" rowspan="1">21 (4.2%)</td><td align="left" colspan="1" rowspan="1">0 (0%)</td><td align="left" colspan="1" rowspan="1">81 (2.5%)</td></tr><tr><td align="left" colspan="1" rowspan="1"> Missing</td><td align="left" colspan="1" rowspan="1">17 (4.2%)</td><td align="left" colspan="1" rowspan="1">13 (12.4%)</td><td align="left" colspan="1" rowspan="1">9 (1.4%)</td><td align="left" colspan="1" rowspan="1">15 (6.9%)</td><td align="left" colspan="1" rowspan="1">47 (5.0%)</td><td align="left" colspan="1" rowspan="1">20 (5.7%)</td><td align="left" colspan="1" rowspan="1">29 (5.8%)</td><td align="left" colspan="1" rowspan="1">11 (25.6%)</td><td align="left" colspan="1" rowspan="1">161 (5.0%)</td></tr></tbody></table></table-wrap></sec></sec><sec id="Sec13" disp-level="1"><title>Discussion</title><sec id="Sec14" disp-level="2"><title>Epidemiology</title><p id="Par18">This register-based observational study confirms that the patella fracture mainly occurs in older women (&gt; 65 years) due to low-energy trauma caused by a simple fall. Outdoor slips could cause seasonal variation and main trauma mechanism with low-energy fall in the winter months. Many fractures with potential intact extensor mechanisms are treated non-operatively. When surgery was chosen, patients were mostly treated with TBW.</p><p id="Par19">Higher frequencies of patella fractures in females have been reported in concordance with our finding [<xref rid="CR8" ref-type="bibr">8</xref>, <xref rid="CR15" ref-type="bibr">15</xref>]. For instance, Begnér et al. reported a 141% increase of patella fractures in females between the 1950s and 1980s [<xref rid="CR15" ref-type="bibr">15</xref>]. Other studies on operatively treated patella fractures present a more even sex distribution [<xref rid="CR16" ref-type="bibr">16</xref>, <xref rid="CR17" ref-type="bibr">17</xref>]. This difference could be interpreted as a difference in fracture classification between sexes with more severe or displaced fractures in males which would thus be considered more suitable for operative intervention. We found a sex difference with more vertical lateral fractures occurring in men and more simple transverse fractures occurring in women. Larsen et al. also found a biconvex curve of patella fracture incidence over age in men, consistent with our findings [<xref rid="CR8" ref-type="bibr">8</xref>]. Several authors have argued that patella fractures, especially in females, should be considered an osteoporotic fracture because of the female population’s higher age and frequency of low energy trauma [<xref rid="CR8" ref-type="bibr">8</xref>, <xref rid="CR15" ref-type="bibr">15</xref>, <xref rid="CR16" ref-type="bibr">16</xref>]. Patella fractures in children and adolescents could be viewed as a different entity caused by other trauma mechanisms in patients with a different physiological setting and a different sex distribution [<xref rid="CR18" ref-type="bibr">18</xref>].</p><p id="Par20">Only 1 in 20 patella fractures was caused by high energy, most of which were multi-fragmentary horizontal fractures. Our finding that the most common injury mechanism was a simple fall is directly in line with previous studies [<xref rid="CR8" ref-type="bibr">8</xref>]. Road traffic accidents as a cause for patella fractures were three times more common in males. Again, the sex difference in fracture distribution may in part be due to different bone quality: a simple fall and direct blow resulting in a lateral vertical fracture (men) or a simple transverse fracture (women).</p></sec><sec id="Sec15" disp-level="2"><title>Fracture classification</title><p id="Par21">Classifying patella fractures is challenging, evidenced by the low intraobserver reproducibility, where adding CT scans can alter both classification and treatment selection [<xref rid="CR19" ref-type="bibr">19</xref>]. Transverse fracture patterns (34-C) represented just over half of the fractures in our study compared to just over 60% of the fractures in a Danish study [<xref rid="CR8" ref-type="bibr">8</xref>]. That Danish study reported 25% comminuted C3 fractures and 14% high energy injuries, which are higher proportions than our study, explaining the difference in complex fracture distribution.</p></sec><sec id="Sec16" disp-level="2"><title>Treatment</title><p id="Par22">Half of the fractures with a potential disruption of the extensor mechanism (C-type) were treated non-operatively compared to almost all fractures without extensor mechanism affection (A2 and B-type fractures). Of the horizontal fractures, articular congruency and non-displaced fractures are assumed to be present in those treated non-operatively [<xref rid="CR4" ref-type="bibr">4</xref>]. Vestergaard et al. [<xref rid="CR9" ref-type="bibr">9</xref>] reported 74% non-operatively treated patellar fractures, which agrees with our findings.</p><p id="Par23">TBW as the golden standard in operative treatment is widely debated, mainly because of the high frequency of reoperations due to implant removal [<xref rid="CR20" ref-type="bibr">20</xref>]. The use of cannulated screws in TBW seems favorable to Kirschner wires (K-wires) as the former minimize local irritation and thus the need for subsequent implant extraction [<xref rid="CR7" ref-type="bibr">7</xref>, <xref rid="CR21" ref-type="bibr">21</xref>]. Combining cannulated screws with sutures (i.e., Fiberwire, Arthrex, Naples, FL, USA) instead of metal banding could reduce complication rates even further without increasing the risk of malunion [<xref rid="CR22" ref-type="bibr">22</xref>]. However, the technique is technically challenging and has specific pitfalls: the length of screws and wear on sutures must be considered [<xref rid="CR7" ref-type="bibr">7</xref>]. More comminuted fractures are not amenable for screw fixation. A combination of sutures with K-wires could, therefore, be a valid option [<xref rid="CR23" ref-type="bibr">23</xref>]. A shift in the applied methods from TBW [<xref rid="CR16" ref-type="bibr">16</xref>] to plating has been observed by several authors [<xref rid="CR5" ref-type="bibr">5</xref>, <xref rid="CR24" ref-type="bibr">24</xref>–<xref rid="CR26" ref-type="bibr">26</xref>] but was not found in our study. A randomized controlled or register-based randomized controlled study with adequate sample size is needed to compare the outcomes of different operative techniques for osteosynthesis of patella fractures. Zhan et al. [<xref rid="CR27" ref-type="bibr">27</xref>] described three-dimensional CT mapping for the multi-fragmentary patellar fractures pre-operatively aiding in the choice of surgical treatment and using the rarely involved supero-medial corner of the patella as a cornerstone for fixation.</p><p id="Par24">Larsen et al. [<xref rid="CR28" ref-type="bibr">28</xref>] did not find any increased mortality in the elderly. Still, the patella fracture can cause long-term discomfort with lower health-related quality of life [<xref rid="CR2" ref-type="bibr">2</xref>] and increased risk for knee arthroplasty compared to patients without patella fractures [<xref rid="CR3" ref-type="bibr">3</xref>]. This underlines the importance of adequate initial treatment.</p></sec><sec id="Sec17" disp-level="2"><title>Strengths and limitations</title><p id="Par25">Our study presents with several shortcomings. Regrettably, we do neither have data on complications and reoperations in this data set nor on other variables, such as length of stay or procedural costs or—most notably—patient satisfaction in terms av PROMs. One major limitation is the fact that the SFR does not comment on associated ligament injuries. This in its turn introduces uncertainty regarding the treatment applied which could very well be influenced by the aforementioned associated injuries. Miscoding, underreporting and transferring errors are examples for sources of error inherent to all observational studies and our study is no exemption. Finally, the data set has missing data (5% or 161 fractures) on treatment, but with 3194 fractures with injury mechanism and fracture classification, we still find the overall epidemiological description of value for the involved stakeholders, i.e., patients, health care providers and orthopedic surgeons in concordance with Aitken et al. [<xref rid="CR29" ref-type="bibr">29</xref>]. This observational study on national register data is the largest epidemiological study on patella fractures reported. The study period ranges from timepoints in which the SFR had a coverage of 50% to over 80% of the orthopedics departments and thereby gave a broad national description of the patella fracture population and treatment.</p></sec></sec><sec id="Sec18" disp-level="1"><title>Conclusions</title><p id="Par26">Patella fractures are mainly caused by a simple low energy fall in elderly woman. Most patients are treated non-operatively. In the case of operative treatment, TBW is the most common method. These results may help health care providers, researchers and clinicians to better understand the panorama of patella fractures in Sweden.</p></sec><sec id="sec24" disp-level="1"><title>Supplementary Information</title><sec id="Sec19" disp-level="2"><p>Below is the link to the electronic supplementary material.</p><supplementary-material id="MOESM1" position="float"><media xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="68_2022_1993_MOESM1_ESM.pdf" mimetype="application" mime-subtype="pdf"><?cloudpmc-path dba6/9712342/d0c0f8361877/68_2022_1993_MOESM1_ESM.pdf?><?cloudpmc-bucket app?><?size 20909?><caption><p>Supplementary file1 (PDF 20 kb)</p></caption></media></supplementary-material></sec></sec><sec id="notes1" disp-level="1"><title>Funding</title><p>Open access funding provided by Umea University.</p></sec><sec id="notes2" disp-level="1"><title>Declarations</title><sec id="FPar1" disp-level="2"><title>Conflict of interest</title><p id="Par27">The authors declare that they have no competing interests.</p></sec></sec><sec id="_ci93_" xml:lang="en" sec-type="contrib-info" disp-level="1"><title>Contributor Information</title><p>Mark Kruse, Email: mark.kruse@regionvasterbotten.se.</p><p>Olof Wolf, Email: olof.wolf@surgsci.uu.se.</p><p>Sebastian Mukka, Email: sebastian.mukka@umu.se.</p><p>Anders Brüggemann, Email: anders.bruggemann@surgsci.uu.se.</p></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><named-content content-type="citation-string">Loudon JK. Biomechanics and pathomechanics of the patellofemoral joint. Int J Sports Phys Ther. 2016;11(6):820–830.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC5095937"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27904787"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Int J Sports Phys Ther&amp;title=Biomechanics and pathomechanics of the patellofemoral joint&amp;author=JK Loudon&amp;volume=11&amp;issue=6&amp;publication_year=2016&amp;pages=820-830&amp;pmid=27904787&amp;"/></mixed-citation></ref><ref id="CR2"><label>2.</label><mixed-citation><named-content content-type="citation-string">Vedel JO, Vistrup S, Larsen P, Elsoe R. Altered long-term health-related quality of life in patients following patella fractures: a long-term follow-up study of 49 patients. Eur J Trauma Emerg Surg. 2018;44(5):707–716. doi: 10.1007/s00068-017-0857-8.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s00068-017-0857-8"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="28993848"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Eur J Trauma Emerg Surg&amp;title=Altered long-term health-related quality of life in patients following patella fractures: a long-term follow-up study of 49 patients&amp;author=JO Vedel&amp;author=S Vistrup&amp;author=P Larsen&amp;author=R Elsoe&amp;volume=44&amp;issue=5&amp;publication_year=2018&amp;pages=707-716&amp;pmid=28993848&amp;doi=10.1007/s00068-017-0857-8&amp;"/></mixed-citation></ref><ref id="CR3"><label>3.</label><mixed-citation><named-content content-type="citation-string">Larsen P, Rathleff MS, Østgaard SE, Johansen MB, Elsøe R. Patellar fractures are associated with an increased risk of total knee arthroplasty: a Matched Cohort Study of 6096 patellar fractures with a mean follow-up of 14.3 years. Bone Jt J. 2018;100-B(11):1477–1481. doi: 10.1302/0301-620X.100B11.BJJ-2018-0312.R2.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1302/0301-620X.100B11.BJJ-2018-0312.R2"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30418070"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Bone Jt J&amp;title=Patellar fractures are associated with an increased risk of total knee arthroplasty: a Matched Cohort Study of 6096 patellar fractures with a mean follow-up of 14.3 years&amp;author=P Larsen&amp;author=MS Rathleff&amp;author=SE Østgaard&amp;author=MB Johansen&amp;author=R Elsøe&amp;volume=100-B&amp;issue=11&amp;publication_year=2018&amp;pages=1477-1481&amp;pmid=30418070&amp;doi=10.1302/0301-620X.100B11.BJJ-2018-0312.R2&amp;"/></mixed-citation></ref><ref id="CR4"><label>4.</label><mixed-citation><named-content content-type="citation-string">Melvin JS, Mehta S. Patellar fractures in adults. J Am Acad Orthop Surg. 2011;19(4):198–207. doi: 10.5435/00124635-201104000-00004.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.5435/00124635-201104000-00004"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="21464213"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=J Am Acad Orthop Surg&amp;title=Patellar fractures in adults&amp;author=JS Melvin&amp;author=S Mehta&amp;volume=19&amp;issue=4&amp;publication_year=2011&amp;pages=198-207&amp;pmid=21464213&amp;doi=10.5435/00124635-201104000-00004&amp;"/></mixed-citation></ref><ref id="CR5"><label>5.</label><mixed-citation><named-content content-type="citation-string">Taylor BC, Mehta S, Castaneda J, French BG, Blanchard C. Plating of patella fractures: techniques and outcomes. J Orthop Trauma. 2014;28(9):e231–e235. doi: 10.1097/BOT.0000000000000039.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/BOT.0000000000000039"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="24343252"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=J Orthop Trauma&amp;title=Plating of patella fractures: techniques and outcomes&amp;author=BC Taylor&amp;author=S Mehta&amp;author=J Castaneda&amp;author=BG French&amp;author=C Blanchard&amp;volume=28&amp;issue=9&amp;publication_year=2014&amp;pages=e231-e235&amp;pmid=24343252&amp;doi=10.1097/BOT.0000000000000039&amp;"/></mixed-citation></ref><ref id="CR6"><label>6.</label><mixed-citation><named-content content-type="citation-string">Heusinkveld MH, den Hamer A, Traa WA, Oomen PJ, Maffulli N. Treatment of transverse patellar fractures: a comparison between metallic and non-metallic implants. Br Med Bull. 2013;107:69–85. doi: 10.1093/bmb/ldt013.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1093/bmb/ldt013"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="23620578"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Br Med Bull&amp;title=Treatment of transverse patellar fractures: a comparison between metallic and non-metallic implants&amp;author=MH Heusinkveld&amp;author=A den Hamer&amp;author=WA Traa&amp;author=PJ Oomen&amp;author=N Maffulli&amp;volume=107&amp;publication_year=2013&amp;pages=69-85&amp;pmid=23620578&amp;doi=10.1093/bmb/ldt013&amp;"/></mixed-citation></ref><ref id="CR7"><label>7.</label><mixed-citation><named-content content-type="citation-string">Hoshino CM, Tran W, Tiberi JV, Black MH, Li BH, Gold SM, Navarro RA. Complications following tension-band fixation of patellar fractures with cannulated screws compared with Kirschner wires. J Bone Jt Surg. 2013;95(7):653–659. doi: 10.2106/JBJS.K.01549.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.2106/JBJS.K.01549"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="23553301"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=J Bone Jt Surg&amp;title=Complications following tension-band fixation of patellar fractures with cannulated screws compared with Kirschner wires&amp;author=CM Hoshino&amp;author=W Tran&amp;author=JV Tiberi&amp;author=MH Black&amp;author=BH Li&amp;volume=95&amp;issue=7&amp;publication_year=2013&amp;pages=653-659&amp;pmid=23553301&amp;doi=10.2106/JBJS.K.01549&amp;"/></mixed-citation></ref><ref id="CR8"><label>8.</label><mixed-citation><named-content content-type="citation-string">Larsen P, Court-Brown CM, Vedel JO, Vistrup S, Elsoe R. Incidence and epidemiology of patellar fractures. Orthopedics. 2016;39(6):e1154–e1158. doi: 10.3928/01477447-20160811-01.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.3928/01477447-20160811-01"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27536953"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Orthopedics&amp;title=Incidence and epidemiology of patellar fractures&amp;author=P Larsen&amp;author=CM Court-Brown&amp;author=JO Vedel&amp;author=S Vistrup&amp;author=R Elsoe&amp;volume=39&amp;issue=6&amp;publication_year=2016&amp;pages=e1154-e1158&amp;pmid=27536953&amp;doi=10.3928/01477447-20160811-01&amp;"/></mixed-citation></ref><ref id="CR9"><label>9.</label><mixed-citation><named-content content-type="citation-string">Vestergaard V, Pedersen AB, Tengberg PT, Troelsen A, Schrøder HM. 20-year trends of distal femoral, patellar, and proximal tibial fractures: a Danish nationwide cohort study of 60,823 patients. Acta Orthop. 2020;91(1):109–114. doi: 10.1080/17453674.2019.1698148.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1080/17453674.2019.1698148"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC7006734"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31795876"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Acta Orthop&amp;title=20-year trends of distal femoral, patellar, and proximal tibial fractures: a Danish nationwide cohort study of 60,823 patients&amp;author=V Vestergaard&amp;author=AB Pedersen&amp;author=PT Tengberg&amp;author=A Troelsen&amp;author=HM Schrøder&amp;volume=91&amp;issue=1&amp;publication_year=2020&amp;pages=109-114&amp;pmid=31795876&amp;doi=10.1080/17453674.2019.1698148&amp;"/></mixed-citation></ref><ref id="CR10"><label>10.</label><mixed-citation><named-content content-type="citation-string">Knutsson SB, Wennergren D, Bojan A, Ekelund J, Möller M. Femoral fracture classification in the Swedish Fracture Register: a validity study. BMC Musculoskelet Disord. 2019;20(1):197. doi: 10.1186/s12891-019-2579-z.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s12891-019-2579-z"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6506935"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31068172"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=BMC Musculoskelet Disord&amp;title=Femoral fracture classification in the Swedish Fracture Register: a validity study&amp;author=SB Knutsson&amp;author=D Wennergren&amp;author=A Bojan&amp;author=J Ekelund&amp;author=M Möller&amp;volume=20&amp;issue=1&amp;publication_year=2019&amp;pages=197&amp;pmid=31068172&amp;doi=10.1186/s12891-019-2579-z&amp;"/></mixed-citation></ref><ref id="CR11"><label>11.</label><mixed-citation><named-content content-type="citation-string">Wennergren D, Bergdahl C, Ekelund J, Juto H, Sundfeldt M, Möller M. Epidemiology and incidence of tibia fractures in the Swedish Fracture Register. Injury. 2018;49(11):2068–2074. doi: 10.1016/j.injury.2018.09.008.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.injury.2018.09.008"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30220634"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Injury&amp;title=Epidemiology and incidence of tibia fractures in the Swedish Fracture Register&amp;author=D Wennergren&amp;author=C Bergdahl&amp;author=J Ekelund&amp;author=H Juto&amp;author=M Sundfeldt&amp;volume=49&amp;issue=11&amp;publication_year=2018&amp;pages=2068-2074&amp;pmid=30220634&amp;doi=10.1016/j.injury.2018.09.008&amp;"/></mixed-citation></ref><ref id="CR12"><label>12.</label><mixed-citation><named-content content-type="citation-string">Bergdahl C, Ekholm C, Wennergren D, Nilsson F, Möller M. Epidemiology and patho-anatomical pattern of 2,011 humeral fractures: data from the Swedish Fracture Register. BMC Musculoskelet Disord. 2016;17:159. doi: 10.1186/s12891-016-1009-8.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s12891-016-1009-8"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC4830043"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="27072511"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=BMC Musculoskelet Disord&amp;title=Epidemiology and patho-anatomical pattern of 2,011 humeral fractures: data from the Swedish Fracture Register&amp;author=C Bergdahl&amp;author=C Ekholm&amp;author=D Wennergren&amp;author=F Nilsson&amp;author=M Möller&amp;volume=17&amp;publication_year=2016&amp;pages=159&amp;pmid=27072511&amp;doi=10.1186/s12891-016-1009-8&amp;"/></mixed-citation></ref><ref id="CR13"><label>13.</label><mixed-citation><named-content content-type="citation-string">Colton C, Gebhard F, Kregor P, Oliver C. AO Classification of patella fractures [Internet]. AO Found. 2008. <ext-link xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="https://surgeryreference.aofoundation.org/orthopedic-trauma/adult-trauma/patella" ext-link-type="uri">https://surgeryreference.aofoundation.org/orthopedic-trauma/adult-trauma/patella</ext-link> Accessed June 2021.</named-content></mixed-citation></ref><ref id="CR14"><label>14.</label><mixed-citation><named-content content-type="citation-string">Kim PH, Leopold SS. In brief: Gustilo-Anderson classification. Clin Orthop Relat Res. 2012;470(11):3270–3274. doi: 10.1007/s11999-012-2376-6.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s11999-012-2376-6"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC3462875"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="22569719"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Clin Orthop Relat Res&amp;title=In brief: Gustilo-Anderson classification&amp;author=PH Kim&amp;author=SS Leopold&amp;volume=470&amp;issue=11&amp;publication_year=2012&amp;pages=3270-3274&amp;pmid=22569719&amp;doi=10.1007/s11999-012-2376-6&amp;"/></mixed-citation></ref><ref id="CR15"><label>15.</label><mixed-citation><named-content content-type="citation-string">Bengnér U, Johnell O, Redlund-Johnell I. Increasing incidence of tibia condyle and patella fractures. Acta Orthop Scand. 1986;57(4):334–336. doi: 10.3109/17453678608994405.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.3109/17453678608994405"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="3788498"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Acta Orthop Scand&amp;title=Increasing incidence of tibia condyle and patella fractures&amp;author=U Bengnér&amp;author=O Johnell&amp;author=I Redlund-Johnell&amp;volume=57&amp;issue=4&amp;publication_year=1986&amp;pages=334-336&amp;pmid=3788498&amp;doi=10.3109/17453678608994405&amp;"/></mixed-citation></ref><ref id="CR16"><label>16.</label><mixed-citation><named-content content-type="citation-string">Byun SE, Sim JA, Joo YB, Kim JW, Choi W, Na YG, Shon OJ. Changes in patellar fracture characteristics: a multicenter retrospective analysis of 1596 patellar fracture cases between 2003 and 2017. Injury. 2019;50(12):2287–2291. doi: 10.1016/j.injury.2019.10.016.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.injury.2019.10.016"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31627900"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Injury&amp;title=Changes in patellar fracture characteristics: a multicenter retrospective analysis of 1596 patellar fracture cases between 2003 and 2017&amp;author=SE Byun&amp;author=JA Sim&amp;author=YB Joo&amp;author=JW Kim&amp;author=W Choi&amp;volume=50&amp;issue=12&amp;publication_year=2019&amp;pages=2287-2291&amp;pmid=31627900&amp;doi=10.1016/j.injury.2019.10.016&amp;"/></mixed-citation></ref><ref id="CR17"><label>17.</label><mixed-citation><named-content content-type="citation-string">Zhu Y, Liu S, Chen W, Wang L, Zhang X, Zhang Y. Socioeconomic factors and individual lifestyles influencing the incidence of patella fractures: a national population-based survey in China. Int Orthop. 2019;43(3):687–695. doi: 10.1007/s00264-018-3985-9.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s00264-018-3985-9"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="29779141"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Int Orthop&amp;title=Socioeconomic factors and individual lifestyles influencing the incidence of patella fractures: a national population-based survey in China&amp;author=Y Zhu&amp;author=S Liu&amp;author=W Chen&amp;author=L Wang&amp;author=X Zhang&amp;volume=43&amp;issue=3&amp;publication_year=2019&amp;pages=687-695&amp;pmid=29779141&amp;doi=10.1007/s00264-018-3985-9&amp;"/></mixed-citation></ref><ref id="CR18"><label>18.</label><mixed-citation><named-content content-type="citation-string">Rennie L, Court-Brown CM, Mok JY, Beattie TF. The epidemiology of fractures in children. Injury. 2007;38(8):913–922. doi: 10.1016/j.injury.2007.01.036.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.injury.2007.01.036"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="17628559"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Injury&amp;title=The epidemiology of fractures in children&amp;author=L Rennie&amp;author=CM Court-Brown&amp;author=JY Mok&amp;author=TF Beattie&amp;volume=38&amp;issue=8&amp;publication_year=2007&amp;pages=913-922&amp;pmid=17628559&amp;doi=10.1016/j.injury.2007.01.036&amp;"/></mixed-citation></ref><ref id="CR19"><label>19.</label><mixed-citation><named-content content-type="citation-string">Lazaro LE, Wellman DS, Pardee NC, Gardner MJ, Toro JB, Macintyre NR, 3rd, Helfet DL, Lorich DG. Effect of computerized tomography on classification and treatment plan for patellar fractures. J Orthop Trauma. 2013;27(6):336–344. doi: 10.1097/BOT.0b013e318270dfe7.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/BOT.0b013e318270dfe7"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="22955333"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=J Orthop Trauma&amp;title=Effect of computerized tomography on classification and treatment plan for patellar fractures&amp;author=LE Lazaro&amp;author=DS Wellman&amp;author=NC Pardee&amp;author=MJ Gardner&amp;author=JB Toro&amp;volume=27&amp;issue=6&amp;publication_year=2013&amp;pages=336-344&amp;pmid=22955333&amp;doi=10.1097/BOT.0b013e318270dfe7&amp;"/></mixed-citation></ref><ref id="CR20"><label>20.</label><mixed-citation><named-content content-type="citation-string">Dy CJ, Little MT, Berkes MB, Ma Y, Roberts TR, Helfet DL, Lorich DG. Meta-analysis of re-operation, nonunion, and infection after open reduction and internal fixation of patella fractures. J Trauma Acute Care Surg. 2012;73(4):928–932. doi: 10.1097/TA.0b013e31825168b6.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/TA.0b013e31825168b6"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="22902732"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=J Trauma Acute Care Surg&amp;title=Meta-analysis of re-operation, nonunion, and infection after open reduction and internal fixation of patella fractures&amp;author=CJ Dy&amp;author=MT Little&amp;author=MB Berkes&amp;author=Y Ma&amp;author=TR Roberts&amp;volume=73&amp;issue=4&amp;publication_year=2012&amp;pages=928-932&amp;pmid=22902732&amp;doi=10.1097/TA.0b013e31825168b6&amp;"/></mixed-citation></ref><ref id="CR21"><label>21.</label><mixed-citation><named-content content-type="citation-string">Zhang Y, Xu Z, Zhong W, Liu F, Tang J. Efficacy of K-wire tension band fixation compared with other alternatives for patella fractures: a meta-analysis. J Orthop Surg Res. 2018;13(1):226. doi: 10.1186/s13018-018-0919-6.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1186/s13018-018-0919-6"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6125997"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30185202"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=J Orthop Surg Res&amp;title=Efficacy of K-wire tension band fixation compared with other alternatives for patella fractures: a meta-analysis&amp;author=Y Zhang&amp;author=Z Xu&amp;author=W Zhong&amp;author=F Liu&amp;author=J Tang&amp;volume=13&amp;issue=1&amp;publication_year=2018&amp;pages=226&amp;pmid=30185202&amp;doi=10.1186/s13018-018-0919-6&amp;"/></mixed-citation></ref><ref id="CR22"><label>22.</label><mixed-citation><named-content content-type="citation-string">Busel G, Barrick B, Auston D, Achor K, Watson D, Maxson B, Infante A, Sanders R, Mir HR. Patella fractures treated with cannulated lag screws and fiberwire® have a high union rate and low rate of implant removal. Injury. 2020;51(2):473–477. doi: 10.1016/j.injury.2019.10.002.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.injury.2019.10.002"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31679830"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Injury&amp;title=Patella fractures treated with cannulated lag screws and fiberwire® have a high union rate and low rate of implant removal&amp;author=G Busel&amp;author=B Barrick&amp;author=D Auston&amp;author=K Achor&amp;author=D Watson&amp;volume=51&amp;issue=2&amp;publication_year=2020&amp;pages=473-477&amp;pmid=31679830&amp;doi=10.1016/j.injury.2019.10.002&amp;"/></mixed-citation></ref><ref id="CR23"><label>23.</label><mixed-citation><named-content content-type="citation-string">Lee BJ, Chon J, Yoon JY, Jung D. Modified tension band wiring using fiberwire for patellar fractures. Clin Orthop Surg. 2019;11(2):244–248. doi: 10.4055/cios.2019.11.2.244.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.4055/cios.2019.11.2.244"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC6526127"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31156779"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Clin Orthop Surg&amp;title=Modified tension band wiring using fiberwire for patellar fractures&amp;author=BJ Lee&amp;author=J Chon&amp;author=JY Yoon&amp;author=D Jung&amp;volume=11&amp;issue=2&amp;publication_year=2019&amp;pages=244-248&amp;pmid=31156779&amp;doi=10.4055/cios.2019.11.2.244&amp;"/></mixed-citation></ref><ref id="CR24"><label>24.</label><mixed-citation><named-content content-type="citation-string">Ellwein A, Lill H, DeyHazra RO, Smith T, Katthagen JC. Outcomes after locked plating of displaced patella fractures: a prospective case series. Int Orthop. 2019;43(12):2807–2815. doi: 10.1007/s00264-019-04337-7.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1007/s00264-019-04337-7"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="31041522"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Int Orthop&amp;title=Outcomes after locked plating of displaced patella fractures: a prospective case series&amp;author=A Ellwein&amp;author=H Lill&amp;author=RO DeyHazra&amp;author=T Smith&amp;author=JC Katthagen&amp;volume=43&amp;issue=12&amp;publication_year=2019&amp;pages=2807-2815&amp;pmid=31041522&amp;doi=10.1007/s00264-019-04337-7&amp;"/></mixed-citation></ref><ref id="CR25"><label>25.</label><mixed-citation><named-content content-type="citation-string">Cho JW, Kent WT, Cho WT, Kim JK, Moon KH, Yeo DH, Kim BS, Oh CW, Oh JK. Miniplate augmented tension-band wiring for comminuted patella fractures. J Orthop Trauma. 2019;33(4):e143–e150. doi: 10.1097/BOT.0000000000001390.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1097/BOT.0000000000001390"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30893222"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=J Orthop Trauma&amp;title=Miniplate augmented tension-band wiring for comminuted patella fractures&amp;author=JW Cho&amp;author=WT Kent&amp;author=WT Cho&amp;author=JK Kim&amp;author=KH Moon&amp;volume=33&amp;issue=4&amp;publication_year=2019&amp;pages=e143-e150&amp;pmid=30893222&amp;doi=10.1097/BOT.0000000000001390&amp;"/></mixed-citation></ref><ref id="CR26"><label>26.</label><mixed-citation><named-content content-type="citation-string">Henrichsen JL, Wilhem SK, Siljander MP, Kalma JJ, Karadsheh MS. Treatment of patella fractures. Orthopedics. 2018;41(6):e747–e755. doi: 10.3928/01477447-20181010-08.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.3928/01477447-20181010-08"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30321439"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Orthopedics&amp;title=Treatment of patella fractures&amp;author=JL Henrichsen&amp;author=SK Wilhem&amp;author=MP Siljander&amp;author=JJ Kalma&amp;author=MS Karadsheh&amp;volume=41&amp;issue=6&amp;publication_year=2018&amp;pages=e747-e755&amp;pmid=30321439&amp;doi=10.3928/01477447-20181010-08&amp;"/></mixed-citation></ref><ref id="CR27"><label>27.</label><mixed-citation><named-content content-type="citation-string">Zhan Y, Zhang Y, Xie X, Luo C. Three-dimensional fracture mapping of multi-fragmentary patella fractures (AO/OTA 34C3) Ann Transl Med. 2021;9(17):1364. doi: 10.21037/atm-21-1814.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.21037/atm-21-1814"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmcid" xlink:href="PMC8506535"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="34733916"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Ann Transl Med&amp;title=Three-dimensional fracture mapping of multi-fragmentary patella fractures (AO/OTA 34C3)&amp;author=Y Zhan&amp;author=Y Zhang&amp;author=X Xie&amp;author=C Luo&amp;volume=9&amp;issue=17&amp;publication_year=2021&amp;pages=1364&amp;pmid=34733916&amp;doi=10.21037/atm-21-1814&amp;"/></mixed-citation></ref><ref id="CR28"><label>28.</label><mixed-citation><named-content content-type="citation-string">Larsen P, Elsoe R. Patella fractures are not associated with an increased risk of mortality in elderly patients. Injury. 2018;49(10):1901–4. doi: 10.1016/j.injury.2018.07.003.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1016/j.injury.2018.07.003"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="30244702"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Injury&amp;title=Patella fractures are not associated with an increased risk of mortality in elderly patients&amp;author=P Larsen&amp;author=R Elsoe&amp;volume=49&amp;issue=10&amp;publication_year=2018&amp;pages=1901-4&amp;pmid=30244702&amp;doi=10.1016/j.injury.2018.07.003&amp;"/></mixed-citation></ref><ref id="CR29"><label>29.</label><mixed-citation><named-content content-type="citation-string">Aitken SA, Hutchison JD, McQueen MM, Court-Brown CM. The importance of epidemiological fracture data: injury epidemiology for the non-epidemiologist. Bone Jt J. 2014;96-B(7):863–867. doi: 10.1302/0301-620X.96B7.34023.</named-content><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="10.1302/0301-620X.96B7.34023"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="pmid" xlink:href="24986937"/><ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="google-scholar" xlink:href="journal=Bone Jt J&amp;title=The importance of epidemiological fracture data: injury epidemiology for the non-epidemiologist&amp;author=SA Aitken&amp;author=JD Hutchison&amp;author=MM McQueen&amp;author=CM Court-Brown&amp;volume=96-B&amp;issue=7&amp;publication_year=2014&amp;pages=863-867&amp;pmid=24986937&amp;doi=10.1302/0301-620X.96B7.34023&amp;"/></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="_adsm93_" xml:lang="en" sec-type="supplementary-materials" disp-level="2"><title>Supplementary Materials</title><supplementary-material id="db_ds_supplementary-material1_reqid_" position="float"><media xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="68_2022_1993_MOESM1_ESM.pdf" mimetype="application" mime-subtype="pdf"><?cloudpmc-path dba6/9712342/d0c0f8361877/68_2022_1993_MOESM1_ESM.pdf?><?cloudpmc-bucket app?><?size 20909?><caption><p>Supplementary file1 (PDF 20 kb)</p></caption></media></supplementary-material></sec></sec></body></article>