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A Laboratory Study on Effects of Cycling Helmet Fit on Biomechanical Measures Associated With Head and Neck Injury and Dynamic Helmet Retention

机译:循环头盔贴合对头颈损伤和动态头盔保留的生物力学措施的实验室研究

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摘要

There is a scant biomechanical literature that tests, in a laboratory setting, whether or not determinants of helmet fit affect biomechanical parameters associated with injury. Using conventional cycling helmets and repeatable models of the human head and neck, integrated into a guided drop impact experiment at speeds up to 6 m/s, this study tests the hypothesis that fit affects head kinematics, neck kinetics, and the extent to which the helmet moves relative to the underlying head (an indicator of helmet positional stability). While there were a small subset of cases where head kinematics were statistically significantly altered by fit, when viewed as a whole our measures of head kinematics suggest that fit does not systematically alter kinematics of the head secondary to impact. Similarly, when viewed as a whole, our data suggest that fit does not systematically alter resultant neck compression and resultant moment and associated biomechanical measures. Our data suggest that backward fit helmets exhibit the worst dynamic stability, in particular when the torso is impacted before the helmeted head is impacted, suggesting that the typical certification method of dynamical loading of a helmet to quantify retention may not be representative of highly plausible cycling incident scenarios where impact forces are first applied to the torso leading to loading of the neck prior to the head. Further study is warranted so that factors of fit that affect injury outcome are uncovered in both laboratory and real-world settings.
机译:在实验室设定中,有一个很少的生物力学文献,在实验室设定,无论是头盔的决定因素是否会影响与伤害相关的生物力学参数。使用传统的循环头盔和人体头部和颈部可重复模型,在速度达到6米/秒的速度集成到导向的液滴冲击实验中,这项研究测试了适应性影响头部运动学,颈部动力学以及程度的假设头盔相对于下面的头部移动(头盔位置稳定的指示)。虽然有一个小的案例子集,但是通过拟合统计学显着改变,虽然作为整体统计学显着改变,但随着整体观察,我们的头像学措施表明,拟合并没有系统地改变次要对撞击的头部的运动学。同样,当整个人看来时,我们的数据表明,适应性不系统地改变合适的颈部压缩和结果时刻以及相关的生物力学措施。我们的数据表明,落后的搭接头盔表现出最差的动态稳定性,特别是当躯干在头盔头部受到影响时,这表明典型的载荷载荷的典型载荷来量化保留时可能不代表高度合理的循环首先将冲击力应用于躯干的事件场景,导致头部颈部装载颈部。进一步研究是有保证的,因此在实验室和现实世界的环境中发现影响伤害结果的适应性因素。

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