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The Influence of Impactor Mass on the Dynamic Response of the Hybrid III Headform and Brain Tissue Deformation

机译:冲击物质对杂交III头部和脑组织变形动态响应的影响

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When determining head injury risks through event reconstruction, it is important to understand how individual impact characteristics influence the dynamic response of the head and its internal structures. The effect of impactor mass has not yet been analyzed in the literature. The purpose of this study was to determine the effects of impactor mass on the dynamic impact response and brain tissue deformation. A 50th-percentile Hybrid III adult male head form was impacted using a simple pendulum system. Impacts to a centric and a non- centric impact location were performed with six varied impactor masses at a velocity of 4.0 m/s. The peak linear and peak angular accelerations were measured. A finite element model (University College Dublin Brain Trauma Model) was used to determine brain deformation, namely, peak maximum principal strain and peak von Mises stress. Impactor mass produced significant differences for peak linear acceleration for centric (F_(5,24) = 217.55, p = 0.0005) and non-centric (F_(5,24) = 161.98, p = 0.0005) impact locations, and for peak angular acceleration for centric (F_(5,24) = 52.51, p = 0.0005) and non-centric (F_(5,24) = 4.18, p = 0.007) impact locations. A change in impactor mass also had a significant effect on the peak maximum principal strain for centric (F_(5,24) = 11.04, p = 0.0005) and non-centric (F_(5,24) = 5.87, p = 0.001) impact locations, and for peak von Mises stress for centric (F_(5,24) = 24.01, p = 0.0005) and non-centric (F_(5,24) = 4.62, p = 0.004) impact locations. These results confirm that the impactor mass of an impact should be considered when determining risks and prevention of head and brain injury.
机译:当通过事件重建确定头部损伤风险时,重要的是要了解单个影响特征如何影响头部及其内部结构的动态响应。在文献中尚未分析撞击物质的影响。本研究的目的是确定撞击物质量对动态冲击响应和脑组织变形的影响。使用简单的摆锤系统影响50百分位的杂交III成年男性头部形状。以4.0米/秒的速度为4.0m / s的六种变化块进行对中心和非中心冲击位置的影响。测量峰值线性和峰角加速度。有限元模型(大学学院都柏林脑创伤模型)用于确定脑变形,即峰值最大主应变和峰值误差。撞击块对于中心的峰值线性加速度产生显着差异(F_(5,24)= 217.55,p = 0.0005)和非中心(F_(5,24)= 161.98,p = 0.0005)冲击位置,以及峰值角度为中心的加速度(F_(5,24)= 52.51,p = 0.0005)和非中心(F_(5,24)= 4.18,p = 0.007)的影响的位置。撞击块的变化也对中心的峰值最大主应变具有显着影响(F_(5,24)= 11.04,P = 0.0005)和非中心(F_(5,24)= 5.87,P = 0.001)冲击位置,以及用于中心的峰值误差为中心(F_(5,24)= 24.01,p = 0.0005)和非中心(f_(5,24)= 4.62,p = 0.004)冲击位置。这些结果证实,在确定头脑损伤的风险和预防时,应考虑影响的影响力。

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