在实验室模拟冰上曲棍球肩部拦截时身体的有效刚度、阻尼和质量。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2024-10-01 Epub Date: 2021-07-28 DOI:10.1080/14763141.2021.1951828
Olivia M G Aguiar, Olga Radivojevic, Brigitte M Potvin, Omid Vakili, Stephen N Robinovitch
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引用次数: 0

摘要

冰上曲棍球是一项快节奏的运动,球员之间的碰撞发生率很高。肩部撞击尤其常见,占包括脑震荡在内的大部分受伤情况。在这些碰撞中产生的力取决于撞击体的惯性和粘弹性特征。此外,护肩在降低峰值力方面的效果取决于肩部的基线(无护肩)特性。我们对九名男子冰上曲棍球运动员(19-26 岁)进行了实验,以测量他们在肩部拦截撞击阶段的有效肩部刚度、阻尼和质量。参与者采用了一种在大学男子冰上曲棍球比赛中常见的拦截方式,包括对三角肌区域的横向撞击,肩部因碰撞而静止。在 550 牛顿时,肩部的有效刚度和阻尼系数平均为 12.8 kN/m 和 377 N-s/m,有效质量平均为身体总质量的 47%。我们的研究结果为冰上曲棍球运动中的肩部碰撞动力学提供了新的证据,可作为设计测试系统以评估和改进护肩保护价值的出发点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective stiffness, damping and mass of the body during laboratory simulations of shoulder checks in ice hockey.

Ice hockey is a fast-paced sport with a high incidence of collisions between players. Shoulder checks are especially common, accounting for a large portion of injuries including concussions. The forces generated during these collisions depend on the inertial and viscoelastic characteristics of the impacting bodies. Furthermore, the effect of shoulder pads in reducing peak force depends on the baseline (unpadded) properties of the shoulder. We conducted experiments with nine men's ice hockey players (aged 19-26) to measure their effective shoulder stiffness, damping and mass during the impact stage of a shoulder check. Participants delivered a style of check commonly observed in men's university ice hockey, involving lateral impact to the deltoid region, with the shoulder brought stationary by the collision. The effective stiffness and damping coefficient of the shoulder averaged 12.8 kN/m and 377 N-s/m at 550 N, and the effective mass averaged 47% of total body mass. The damping coefficient and stiffness increased with increasing force, but there was no significant difference in the damping coefficient above 350 N. Our results provide new evidence on the dynamics of shoulder checks in ice hockey, as a starting point for designing test systems for evaluating and improving the protective value of shoulder pads.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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