首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >The effect of a novel impact management strategy on maximum principal strain for reconstructions of American football concussive events
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The effect of a novel impact management strategy on maximum principal strain for reconstructions of American football concussive events

机译:新型影响管理策略对美运震动事件重建最大主要菌株的影响

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摘要

The purpose of this study was to test the effectiveness of a helmet to reduce maximum principal strain by decoupling the head-helmet interface in reconstructions of head-to-head concussive impacts in American football. The primary goal of the American football helmet has been protection of players against skull fractures and other traumatic brain injuries. The modern-day helmet has evolved and been designed to mitigate traumatic brain injury, but it does not offer optimized protection against concussive injury. Studies to determine the influence of decoupling strategies on changes to brain motion and the resulting influence on maximum principal strain, a metric associated with concussive injury, have not yet been examined under concussive impact conditions. In this study, 19 helmet-to-helmet concussive events from professional American football were reconstructed using a pneumatically driven linear impactor to determine the components (resultant and dominant) of linear and rotational acceleration. The University of College Dublin Brain Trauma Model was used to determine maximum principal strain values. A prototype helmet with a decoupling liner strategy was shown to significantly reduce maximum principal strain in seven of the head-to-head concussive impact reconstructions. In each case, the prototype helmet significantly reduced the dominant coordinate component of rotational acceleration. The results of this study indicate the potential of a helmet liner decoupling system in reducing maximum principal strain for reconstructions of concussive events in American football.
机译:本研究的目的是测试头盔的有效性,以减少最大主应变,通过将头盔界面解耦,在美国足球中的头部对头震荡冲击的重建中解耦。美式橄榄球头盔的主要目标是对球员对抗头骨骨折和其他创伤性脑损伤的保护。现代盔甲已经进化,设计用于减轻创伤性脑损伤,但它并未提供针对震荡损伤的优化保护。在巨大影响条件下,尚未在巨大影响条件下尚未在震荡影响条件下尚未检查脑运动对脑运动变化以及导致对最大主要菌株的影响的影响,尚未在巨大影响。在本研究中,使用气动驱动的线性冲击器重建了来自专业美式足球的19头盔到头盔震惊事件,以确定线性和旋转加速度的组件(结果和主导)。学院大学都柏林脑创伤模型用于确定最大主应变值。显示了具有去耦衬里策略的原型头盔,显着降低了七个头部震荡冲击重建中的最大主要菌株。在每种情况下,原型头盔显着降低了旋转加速度的显性坐标分量。该研究的结果表明头盔衬里去耦系统在减少美国足球中震动事件的最大主要菌株时的潜力。

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