Risk of head injury associated with distinct head impact events in elite women's hockey

G. Kosziwka, L. Champoux, J. Cournoyer, M. Gilchrist, T. Hoshizaki
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Abstract

Head injuries are a major health concern for sport participants as 90% of emergency department visits for sport-related brain injuries are concussion related.1 Recently, reports have shown a higher incidence of sport-related concussion in female athletes compared to males.3 Few studies have described the events by which concussions occur in women's hockey,2,7,8 however a biomechanical analysis of the risk of concussion has not yet been conducted. Therefore, the purpose of this study was to identify the highest risk concussive events in elite women's hockey and characterize these events through reconstructions to identify the associated levels of peak linear and angular acceleration and strain from finite element analysis. 44 head impact events were gathered from elite women's hockey game video and analyzed for impact event, location and velocity. In total, 27 distinct events based on impact event, location and velocity were reconstructed using a hybrid III headform and various testing setups to obtain dynamic response and brain tissue response. A three-way Multivariate Analysis of Variance (MANOVA) was conducted to determine the influence of event, location and velocity. The results of this study show that head- to-ice impacts resulted in significantly higher responses compared to shoulder-to- head collisions and head-to boards impacts however, shoulder and boards impacts were more frequent. All events produced responses comparable to proposed concussion threshold values.21 This research demonstrates the importance of considering the event, the impact characteristics, the magnitude of response, and the frequency of these impacts when attempting to capture the short and long term risks of brain trauma in women's hockey.
精英女子曲棍球中与不同头部撞击事件相关的头部损伤风险
头部损伤是运动参与者的主要健康问题,因为90%的运动相关脑损伤急诊就诊与脑震荡有关。1最近,报告显示,与男性相比,女性运动员运动相关脑震荡的发生率更高。3很少有研究描述女子曲棍球中发生脑震荡的事件,2,7,8然而,尚未对脑震荡风险进行生物力学分析。因此,本研究的目的是确定精英女子曲棍球中风险最高的震荡事件,并通过重建来表征这些事件,以通过有限元分析确定峰值线性和角加速度和应变的相关水平。从精英女子曲棍球比赛视频中收集了44个头部撞击事件,并对撞击事件、位置和速度进行了分析。使用混合III人头模型和各种测试装置,总共重建了27个基于撞击事件、位置和速度的不同事件,以获得动态响应和脑组织响应。进行了三元多变量方差分析(MANOVA),以确定事件、地点和速度的影响。这项研究的结果表明,与肩对头碰撞和头对板碰撞相比,头对冰的碰撞会产生更高的响应。然而,肩和板的碰撞更频繁。所有事件产生的反应都与拟议的脑震荡阈值相当。21这项研究表明,在试图捕捉女子曲棍球中脑损伤的短期和长期风险时,考虑事件、影响特征、反应幅度和这些影响的频率非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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