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跑步时足旋步态改变对髋关节和踝关节,而不是膝关节的支撑相关节反作用力有影响。

Foot Rotation Gait Modifications Affect Hip and Ankle, But Not Knee, Stance Phase Joint Reaction Forces During Running.

机构信息

Department of Human Movement Sciences, 2016 Student Recreation Center, Old Dominion University, Norfolk, VA 23529.

Department of Kinesiology, HHS2-203, California State University, Long Beach, CA 90840.

出版信息

J Biomech Eng. 2021 Feb 1;143(2). doi: 10.1115/1.4047994.

Abstract

Alterations of foot rotation angles have successfully reduced external knee adduction moments during walking and running. However, reductions in knee adduction moments may not result in reductions in knee joint reaction forces. The purpose of this study was to examine the effects of internal and external foot rotation on knee, hip, and ankle joint reaction forces during running. Motion capture and force data were recorded of 19 healthy adults running at 3.35 m/s during three conditions: (1) preferred (normal) and with (2) internal and (3) external foot rotation. Musculoskeletal simulations were performed using opensim and the Rajagopal 2015 model, modified to a two degree-of-freedom knee joint. Muscle excitations were derived using static optimization, including muscle physiology parameters. Joint reaction forces (i.e., the total force acting on the joints) were computed and compared between conditions using one-way analyses of variance (ANOVAs) via statistical parametric mapping (SPM). Internal foot rotation reduced resultant hip forces (from 18% to 23% stride), while external rotation reduced resultant ankle forces (peak force at 20% stride) during the stance phase. Three-dimensional and resultant knee joint reaction forces only differed at very early and very late stance phase. The results of this study indicate, similar to previous findings, that reductions in external knee adduction moments do not mirror reductions in knee joint reaction forces.

摘要

足部旋转角度的改变成功减少了行走和跑步时膝关节的外展力矩。然而,膝关节外展力矩的减少并不一定导致膝关节反作用力的减少。本研究的目的是探讨在跑步过程中足部内旋和外旋对膝关节、髋关节和踝关节反作用力的影响。运动捕捉和力数据记录了 19 名健康成年人以 3.35m/s 的速度在三种情况下跑步:(1)正常(惯用)和(2)内旋和(3)外旋。使用 opensim 和 Rajagopal 2015 模型对肌肉骨骼进行了仿真,该模型修改为两自由度膝关节。使用静态优化(包括肌肉生理参数)得出肌肉激活动力学。使用统计参数映射(SPM)通过单向方差分析(ANOVA)在条件之间计算和比较关节反作用力(即作用在关节上的总力)。内旋减少了髋关节的合力(从 18%到 23%的步幅),而外旋减少了踝关节的合力(在 20%的步幅时达到峰值)。三维和合力膝关节反作用力仅在非常早和非常晚的支撑阶段有所不同。本研究的结果表明,与以前的研究结果相似,膝关节外展力矩的减少并不反映膝关节反作用力的减少。

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