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在步态中可以训练足部的放置方式吗?当踝关节力矩受到限制时,稳定性控制的适应性。

Can foot placement during gait be trained? Adaptations in stability control when ankle moments are constrained.

机构信息

Department of Human Movement Sciences, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, Amsterdam, the Netherlands.

Department of Human Movement Sciences, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, Amsterdam, the Netherlands; Institute of Brain and Behavior Amsterdam, the Netherlands.

出版信息

J Biomech. 2022 Mar;134:110990. doi: 10.1016/j.jbiomech.2022.110990. Epub 2022 Feb 5.

Abstract

Accurate coordination of mediolateral foot placement, relative to the center of mass kinematic state, is one of the mechanisms which ensures mediolateral stability during human walking. Previously, we found that shoes constraining ankle moments decreased the degree of foot placement control with respect to the center of mass kinematic state. As such, ankle moment constraints can be seen as a perturbation of foot placement. Direct mechanical perturbations of the swing leg trajectory can improve the degree of foot placement control as an after-effect. Here, we asked whether constrained ankle moments could have a similar effect. If confirmed, this would offer a simple training tool for individuals with impaired foot placement control. Participants walked in three conditions; normal (baseline) while wearing shoes constraining ankle moments (training) and normal again (after-effects). The degree of foot placement control was calculated as the percentage of variance in foot placement that could be predicted based on the center of mass kinematic state in the preceding swing phase. During training, the degree of foot placement control decreased initially compared to baseline, but it gradually improved over time. In the after-effect condition, it was higher than during baseline, yet not significantly so. During training, we observed increased step width, decreased stride time and reduced local dynamic stability. In conclusion, constraining ankle moment control deteriorates the degree of foot placement control. A non-significant trend towards an improved degree of foot placement control after prolonged exposure to constrained ankle moments, allows for speculation on a training potential.

摘要

准确协调足的内外侧位置相对于质心运动学状态,是确保人类行走中内外侧稳定性的机制之一。之前,我们发现限制踝关节力矩会降低足相对于质心运动学状态的位置控制程度。因此,踝关节力矩限制可以被视为足位置的一种干扰。直接机械干扰摆动腿轨迹可以改善足位置控制程度,作为后续效应。在这里,我们想知道受限的踝关节力矩是否可以产生类似的效果。如果得到证实,这将为足位置控制受损的个体提供一种简单的训练工具。参与者在三种条件下行走:正常(基线)时穿着限制踝关节力矩的鞋子(训练),然后再次正常行走(后续效应)。足位置控制程度的计算方法是,根据前一个摆动阶段的质心运动学状态,预测足位置变化的百分比。在训练过程中,与基线相比,足位置控制程度最初会降低,但随着时间的推移逐渐改善。在后续效应条件下,它高于基线,但不显著。在训练过程中,我们观察到步宽增加、步幅时间减少和局部动态稳定性降低。总之,限制踝关节力矩控制会降低足位置控制程度。在长时间受到限制的踝关节力矩后,足位置控制程度出现非显著改善趋势,这表明可能存在训练潜力。

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