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国家橄榄球联盟中头盔撞击地面产生的冲击的生物力学。

The biomechanics of concussive helmet-to-ground impacts in the National Football league.

机构信息

Biomechanics Consulting and Research, LLC, USA; Center for Applied Biomechanics, University of Virginia, USA.

Center for Applied Biomechanics, University of Virginia, USA.

出版信息

J Biomech. 2020 Jan 23;99:109551. doi: 10.1016/j.jbiomech.2019.109551. Epub 2019 Dec 4.

Abstract

This paper presents a detailed characterization of helmet-to-ground impacts in the National Football League. Video analysis was performed for 16 head-to-ground impacts that caused concussions. Average resultant closing velocity was 8.3 m/s at an angle nearly 45° to the surface. Preimpact rotational velocity of the helmet ranged from negligible to as high as 54.1 rad/s. Helmet impacts were concentrated on the posterior and lateral aspects. To study the interaction in greater detail, a helmeted anthropomorphic test device (ATD) was launched over a football field and fell to the ground in various impact conditions. Substantial decoupling between the helmet and the head was observed, such that the head rebounded within the helmet and underwent changes in linear and rotational motion greater than those of the helmet. Vertical helmet rebound was also observed; the helmet underwent a change in vertical velocity on average 24% greater than the vertical component of its closing velocity. Frictional interaction between the helmet and the ground surface caused the helmet to undergo an average horizontal change in velocity of 57% of the horizontal component of its closing velocity. Finally, the duration of a helmet-to-ground impact was generally in the range of 15 - 30 ms, suggesting that the impact surface provides little ride-down. Lengthening this duration could be beneficial both by reducing the peak linear and rotational acceleration and by shifting the impact toward a time regime where brain strain is related to rotational acceleration rather than rotational velocity.

摘要

本文详细描述了美国国家橄榄球联盟中头盔与地面的碰撞情况。对 16 次导致脑震荡的头部与地面的碰撞进行了视频分析。平均最终闭合速度在接近 45°的角度下达到 8.3m/s。头盔的初始旋转速度从可以忽略不计到高达 54.1rad/s 不等。头盔的碰撞主要集中在后部和侧面。为了更详细地研究相互作用,使用戴头盔的仿人测试设备(ATD)在橄榄球场上进行发射,并在各种撞击条件下坠落地面。头盔和头部之间存在明显的解耦,使得头部在头盔内反弹,并经历了比头盔更大的线性和旋转运动变化。还观察到垂直的头盔反弹;头盔的垂直速度变化平均比其闭合速度的垂直分量大 24%。头盔和地面之间的摩擦相互作用导致头盔的水平速度平均变化为其闭合速度水平分量的 57%。最后,头盔与地面的碰撞时间通常在 15-30ms 范围内,这表明碰撞表面几乎没有减速作用。延长这段时间可能会通过降低峰值线性和旋转加速度以及将冲击移至与旋转加速度而不是旋转速度相关的时间范围而受益。

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