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Finite element modeling of human brain response to football helmet impacts

机译:人脑对橄榄球头盔撞击反应的有限元建模

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The football helmet is used to help mitigate the occurrence of impact-related traumatic (TBI) and minor traumatic brain injuries (mTBI) in the game of American football. While the current helmet design methodology may be adequate for reducing linear acceleration of the head and minimizing TBI, it however has had less effect in minimizing mTBI. The objectives of this study are (a) to develop and validate a coupled finite element (FE) model of a football helmet and the human body, and (b) to assess responses of different regions of the brain to two different impact conditions - frontal oblique and crown impact conditions. The FE helmet model was validated using experimental results of drop tests. Subsequently, the integrated helmet-human body FE model was used to assess the responses of different regions of the brain to impact loads. Strain-rate, strain, and stress measures in the corpus callosum, midbrain, and brain stem were assessed. Results show that maximum strain-rates of 27 and 19s(-1) are observed in the brain-stem and mid-brain, respectively. This could potentially lead to axonal injuries and neuronal cell death during crown impact conditions. The developed experimental-numerical framework can be used in the study of other helmet-related impact conditions.
机译:橄榄球头盔用于减轻美式足球比赛中与冲击有关的外伤(TBI)和轻度脑外伤(mTBI)的发生。虽然当前的头盔设计方法可能足以降低头部的线性加速度并使TBI最小化,但是在最小化mTBI方面效果较小。这项研究的目的是(a)开发和验证足球头盔与人体的耦合有限元(FE)模型,以及(b)评估大脑不同区域对两种不同撞击条件(额叶)的反应倾斜和冠冲击条件。 FE头盔模型使用跌落测试的实验结果进行了验证。随后,使用集成头盔-人体有限元模型来评估大脑不同区域对负荷的响应。评估了call体,中脑和脑干的应变率,应变和压力。结果表明,在脑干和中脑分别观察到最大应变率分别为27和19s(-1)。这可能会在冠部撞击情况下导致轴突损伤和神经元细胞死亡。所开发的实验数字框架可用于研究与头盔相关的其他撞击条件。

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