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自行车头盔的抗冲击系统,以降低头部加速度和颅脑损伤风险。

Angular Impact Mitigation system for bicycle helmets to reduce head acceleration and risk of traumatic brain injury.

机构信息

Biomechanics Laboratory, Legacy Research Institute, Portland, OR 97232, United States.

出版信息

Accid Anal Prev. 2013 Oct;59:109-17. doi: 10.1016/j.aap.2013.05.019. Epub 2013 May 25.

Abstract

Angular acceleration of the head is a known cause of traumatic brain injury (TBI), but contemporary bicycle helmets lack dedicated mechanisms to mitigate angular acceleration. A novel Angular Impact Mitigation (AIM) system for bicycle helmets has been developed that employs an elastically suspended aluminum honeycomb liner to absorb linear acceleration in normal impacts as well as angular acceleration in oblique impacts. This study tested bicycle helmets with and without AIM technology to comparatively assess impact mitigation. Normal impact tests were performed to measure linear head acceleration. Oblique impact tests were performed to measure angular head acceleration and neck loading. Furthermore, acceleration histories of oblique impacts were analyzed in a computational head model to predict the resulting risk of TBI in the form of concussion and diffuse axonal injury (DAI). Compared to standard helmets, AIM helmets resulted in a 14% reduction in peak linear acceleration (p<0.001), a 34% reduction in peak angular acceleration (p<0.001), and a 22-32% reduction in neck loading (p<0.001). Computational results predicted that AIM helmets reduced the risk of concussion and DAI by 27% and 44%, respectively. In conclusion, these results demonstrated that AIM technology could effectively improve impact mitigation compared to a contemporary expanded polystyrene-based bicycle helmet, and may enhance prevention of bicycle-related TBI. Further research is required.

摘要

头部的角加速度是外伤性脑损伤(TBI)的已知原因,但现代自行车头盔缺乏专门的机制来减轻角加速度。已经开发出一种新颖的自行车头盔角加速度缓解(AIM)系统,该系统采用弹性悬挂的铝蜂窝衬垫,以吸收正常冲击中的线性加速度以及斜冲击中的角加速度。本研究测试了具有和不具有 AIM 技术的自行车头盔,以比较评估冲击缓解效果。进行了正常冲击测试以测量线性头部加速度。进行了斜向冲击测试以测量头部的角加速度和颈部负荷。此外,还在计算头部模型中分析了斜向冲击的加速度历史,以预测脑震荡和弥漫性轴索损伤(DAI)形式的 TBI 风险。与标准头盔相比,AIM 头盔使峰值线性加速度降低了 14%(p<0.001),峰值角加速度降低了 34%(p<0.001),颈部负荷降低了 22-32%(p<0.001)。计算结果预测,AIM 头盔可分别降低 27%和 44%的脑震荡和 DAI 风险。总之,这些结果表明,与现代基于膨胀聚苯乙烯的自行车头盔相比,AIM 技术可有效提高冲击缓解效果,并可能增强对与自行车相关的 TBI 的预防作用。需要进一步研究。

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