首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Head Injury Potential and the Effectiveness of Headgear in Women's Lacrosse
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Head Injury Potential and the Effectiveness of Headgear in Women's Lacrosse

机译:女子曲棍网兜球头部受伤的可能性和头饰的有效性

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Over the past 10 years, lacrosse has grown increasingly popular, making it one of the fastest growing team sports in the country. Similar to other sporting activities, head injuries in lacrosse can and do occur, and the number of lacrosse-related head injuries has increased in recent years. In women's lacrosse, protective headgear is not required, but U.S. Lacrosse and the American Society for Testing and Materials are currently working to develop a headgear standard for the women's game. In the interim, some female lacrosse programs and individual players are wearing soft headgear during play. The effectiveness of this headgear is unknown. Testing was conducted to better understand the material properties of various types of headgear that may be used in lacrosse and the effect of this headgear on head impact response and head injury potential. For the evaluation of head impact response, an instrumented Hybrid III anthropomorphic test device (ATD) was impacted on the side of the head with lacrosse balls and the front and side of the head with a lacrosse stick. The linear and rotational impact response of the head and corresponding acceleration-based injury metrics are reported. Testing was then repeated with the ATD wearing different types of headgear. Tested headgear included a men's lacrosse helmet and two brands of commercially-available soft headgear. For the higher velocity ball impacts, there was no statistically-significant difference in the measured linear and rotational response of the head for the no headgear and soft headgear test conditions. For the lower velocity ball impacts, there was a small, yet statistically-significant, reduction in head linear acceleration for one of the soft headgears tested in comparison to the no headgear test condition, but there was not a statistically-significant difference in the rotational impact response with this headgear. These results indicate that the soft headgear would not be effective in reducing head injury potential during higher velocity ball impacts, such as ball speeds associated with shooting in women's lacrosse. The men's lacrosse helmet reduced both the linear and rotational response of the head for the higher and lower velocity ball impacts. Material testing showed that the padding in the hard helmet exhibited larger strain energy than the padding within the soft headgears when tested in compression. These results correlate with the larger reductions in head accelerations during ball impacts by the hard helmet. For the stick impacts, there were no statistically-significant differences in the lateral impact response of the head for the helmeted and soft headgear test conditions in comparison to the no headgear test condition, but there were statistically-significant, albeit small, differences in the frontal impact response of the head. The similar impact responses of the head during the stick impacts with and without headgear can be attributed to the relatively low severity of these impacts and the characteristics of the impactor.
机译:在过去的10年中,曲棍网兜球日益流行,使其成为该国增长最快的团队运动之一。与其他体育活动类似,曲棍网兜球确实会发生头部受伤,近年来与曲棍球相关的头部受伤事件有所增加。在女子曲棍球中,不需要保护性头盔,但美国曲棍球协会和美国测试与材料协会目前正在努力制定女子比赛用的头盔标准。在此期间,某些女子长曲棍球项目和个人运动员在比赛中都穿着柔软的头饰。这种头饰的有效性尚不清楚。进行测试以更好地了解曲棍网兜球可能使用的各种类型的头饰的材料特性以及该头饰对头部撞击反应和头部受伤可能性的影响。为了评估头部的撞击反应,将装有仪器的Hybrid III拟人化测试装置(ATD)用曲棍球击中头部的侧面,并用曲棍球棍击中头部的正面和侧面。报告了头部的线性和旋转冲击响应以及相应的基于加速度的伤害指标。然后使用不同类型的头带对ATD进行重复测试。经过测试的头盔包括一个男士曲棍网兜球头盔和两个品牌的市售软帽。对于较高速度的球撞击,在没有头盔和软头盔的测试条件下,测得的头部线性和旋转响应在统计上没有显着差异。对于较低速度的球撞击,与无头盔测试条件相比,所测试的一种软头盔的头部线性加速度减小幅度较小,但在统计上具有显着意义,但旋转角度没有统计学上的显着差异头饰的冲击响应。这些结果表明,在高速球撞击(例如与女子长曲棍球投篮相关的球速)期间,柔软的头盔不会有效减少潜在的头部伤害。男士曲棍网兜球头盔降低了头部在高速和低速球撞击时的线性和旋转响应。材料测试表明,在压缩状态下进行测试时,安全帽中的填充物比软帽中的填充物具有更大的应变能。这些结果与安全帽在击球过程中头部加速度的较大降低有关。对于棒击,与无头盔测试条件相比,头盔和软质头盔测试条件下头部的侧向冲击响应在统计学上没有显着差异,但在头部碰撞方面有统计学意义上的差异,尽管很小。头部的正面撞击反应。在有和没有头盔的情况下,杆撞击期间头部的相似撞击响应可归因于这些撞击的相对较低的严重程度以及撞击器的特性。

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