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Examination of the relationship between peak linear and angular accelerations to brain deformation metrics in hockey helmet impacts

机译:检查冰球头盔撞击中峰值加速度和线性加速度与大脑变形指标之间的关系

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摘要

Ice hockey is a contact sport which has a high incidence of brain injury. The current methods of evaluating protective devices use peak resultant linear acceleration as their pass/fail criteria, which are not fully representative of brain injuries as a whole. The purpose of this study was to examine how the linear and angular acceleration loading curves from a helmeted impact influence currently used brain deformation injury metrics. A helmeted Hybrid III headform was impacted in five centric and non-centric impact sites to elicit linear and angular acceleration responses. These responses were examined through the use of a brain model. The results indicated that when the helmet is examined using peak resultant linear acceleration alone, they are similar and protective, but when a 3D brain deformation response is used to examine the helmets, there are risks of brain injury with lower linear accelerations which would pass standard certifications for safety.
机译:冰上曲棍球是一项接触运动,具有很高的脑损伤发生率。当前评估防护设备的方法使用峰值合成线性加速度作为通过/失败标准,这不能完全代表整个脑部损伤。这项研究的目的是检查来自头盔冲击的线性和角加速度负荷曲线如何影响当前使用的大脑变形损伤指标。头盔式Hybrid III头饰在五个中心和非中心撞击点受到撞击,以引起线性和角加速度响应。通过使用脑模型检查了这些反应。结果表明,仅使用峰值合成线性加速度对头盔进行检查时,它们具有相似性和保护性,但是当使用3D脑变形响应来检查头盔时,线性加速度较低的脑损伤风险会超过标准安全认证。

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