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The application of brain tissue deformation values in assessing the safety performance of ice hockey helmets

机译:脑组织变形值在评估冰球头盔安全性能中的应用

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摘要

This research was undertaken to examine a new method for assessing the performance of ice hockey helmets. It has been proposed that the current centric impact standards for ice hockey helmets, measuring peak linear acceleration, have effectively eliminated traumatic head injuries in the sport, but that angular acceleration and brain tissue deformation metrics are more sensitive to the conditions associated with concussive injuries, which continue to be a common injury. Ice hockey helmets were impacted using both centric and non-centric impact protocols at 7.5 m/s using a linear impactor. Dynamic impact responses and brain tissue deformations from the helmeted centric and non-centric head form impacts were assessed with respect to proposed concussive injury thresholds from the literature. The results of the helmet impacts showed that the method used was sensitive enough to distinguish differences in performance between helmet models. The results have shown that peak linear acceleration yielded low magnitudes f response to an impact, but peak angular acceleration and brain deformation metrics consistently reported higher magnitudes, reflecting a high risk for incurring a mild traumatic brain injury.
机译:进行了这项研究,以研究一种评估冰球头盔性能的新方法。有人提出,目前用于冰球头盔的中心冲击标准,用于测量峰值线性加速度,可以有效地消除运动中的头部头部外伤,但是角加速度和脑组织变形指标对于与脑震荡相关的情况更为敏感,这仍然是常见的伤害。冰球头盔使用线性冲击器以7.5 m / s的速度进行了中心和非中心撞击协议的撞击。针对文献中提出的脑震荡阈值,评估了来自头盔状中心和非中心头部形态冲击的动态冲击响应和脑组织变形。头盔撞击的结果表明,所使用的方法足够灵敏,可以区分头盔模型之间的性能差异。结果表明,线性加速度峰值对撞击的响应较低,但是峰值角加速度和大脑变形指标始终报告较高的幅度,反映出发生轻度颅脑损伤的高风险。

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