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Every Newton Hertz: A Macro to Micro Approach to Investigating Brain Injury

机译:每个牛顿赫兹:一种宏观调查脑损伤的微观方法

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The high incidence of concussion in contact sports provides a unique opportunity to collect data to characterize mild traumatic brain injury. This paper outlines a macro to micro approach in which the organ level response of the head is analyzed through head acceleration data from human volunteers and the tissue level response is analyzed through finite element analysis of these data. The helmets of Virginia Tech football players are instrumented with multi-accelerometer measurement devices to record linear and rotational head accelerations for every impact during a game or practice. These impacts are then modeled using the Simulated Injury Monitor (SIMon) finite element head model. Cumulative strain damage measure was investigated for the impacts resulting in the high linear and rotational accelerations. The effect of head impacts on functional performance in football players is also investigated to identify any cognitive effects from repetitive sub-concussive impacts. A better understanding of the effects of head impacts and the mechanisms of brain injury will likely result in insight to future head injury prevention methods and cellular research on brain injury.
机译:联系运动中脑震荡的高发病率提供了收集数据的独特机会,以表征轻度创伤性脑损伤。本文概述了微观方法,其中通过来自人志愿者的头部加速数据分析头部的器官水平响应,并通过这些数据的有限元分析分析组织水平响应。弗吉尼亚科技足球运动员的头盔用多加速度计测量装置有助于记录游戏或练习期间的每次影响的线性和旋转头部加速度。然后使用模拟损伤监视器(Simon)有限元头模型进行建模这些影响。研究了累积应变损伤措施,用于产生高线性和旋转加速度的影响。还调查了头部影响对足球运动员功能性能的影响,以确定重复次危害影响的任何认知效果。更好地了解头部影响的影响和脑损伤机制可能导致未来头部损伤预防方法和脑损伤细胞研究的见解。

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