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撞击界面、肌肉活动和膝关节角度对外部撞击后产生的撞击力以及胫骨和股骨加速度的影响。

The influences of impact interface, muscle activity, and knee angle on impact forces and tibial and femoral accelerations occurring after external impacts.

作者信息

Potthast Wolfgang, Brüggemann Gert-Peter, Lundberg Arne, Arndt Anton

机构信息

Institute for Biomechanics and Orthopaedics, German Sport University, Cologne, Germany.

出版信息

J Appl Biomech. 2010 Feb;26(1):1-9. doi: 10.1123/jab.26.1.1.

Abstract

The purpose of this study was to quantify relative contributions of impact interface, muscle activity, and knee angle to the magnitudes of tibial and femoral accelerations occurring after external impacts. Impacts were initiated with a pneumatically driven impacter under the heels of four volunteers. Impact forces were quantified with a force sensor. Segmental accelerations were measured with bone mounted accelerometers. Experimental interventions were hard and soft shock interfaces, different knee angles (0 degrees, 20 degrees, 40 degrees knee flexion), and muscular preactivation (0%, 30%, 60% of maximal voluntary contraction) of gastrocnemii, hamstrings, and quadriceps. Greater knee flexion led to lower impact forces and higher tibial accelerations. Increased muscular activation led to higher forces and lower tibial accelerations. The softer of the two shock interfaces under study reduced both parameters. The effects on accelerations and forces through the activation and knee angle changes were greater than the effect of interface variations. The hardness of the two shock interfaces explained less than 10% of the variance of accelerations and impact forces, whereas knee angle changes explained 25-29%, and preactivation changes explained 35-48% of the variances. It can be concluded that muscle force and knee joint angle have greater effects in comparison with interface hardness on the severity of shocks on the lower leg.

摘要

本研究的目的是量化冲击界面、肌肉活动和膝关节角度对外部冲击后胫骨和股骨加速度大小的相对贡献。在四名志愿者的足跟下方,使用气动冲击器引发冲击。用测力传感器对冲击力进行量化。用安装在骨头上的加速度计测量节段加速度。实验干预包括硬冲击界面和软冲击界面、不同的膝关节角度(膝关节屈曲0度、20度、40度)以及腓肠肌、腘绳肌和股四头肌的肌肉预激活(最大自主收缩的0%、30%、60%)。膝关节屈曲角度越大,冲击力越小,胫骨加速度越高。肌肉激活增加会导致力增大,胫骨加速度降低。所研究的两种冲击界面中较软的一种会使这两个参数均降低。通过激活和膝关节角度变化对加速度和力的影响大于界面变化的影响。两种冲击界面的硬度对加速度和冲击力方差的解释不足10%,而膝关节角度变化解释了25 - 29%,预激活变化解释了35 - 48%的方差。可以得出结论,与界面硬度相比,肌肉力量和膝关节角度对小腿冲击严重程度的影响更大。

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