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体重分布变化对步态起始过程中外侧稳定性控制的影响。

Effects of Changing Body Weight Distribution on Mediolateral Stability Control during Gait Initiation.

作者信息

Caderby Teddy, Yiou Eric, Peyrot Nicolas, de Viviés Xavier, Bonazzi Bruno, Dalleau Georges

机构信息

Laboratoire IRISSE, UFR des Sciences de l'Homme et de l'Environnement, Université de la Réunion Ile de la Réunion, France.

Laboratoire CIAMS, Université Paris Sud, Université Paris-SaclayOrsay, France; Laboratoire CIAMS, Université d'OrléansOrléans, France.

出版信息

Front Hum Neurosci. 2017 Mar 27;11:127. doi: 10.3389/fnhum.2017.00127. eCollection 2017.

Abstract

During gait initiation, anticipatory postural adjustments (APA) precede the execution of the first step. It is generally acknowledged that these APA contribute to forward progression but also serve to stabilize the whole body in the mediolateral direction during step execution. Although previous studies have shown that changes in the distribution of body weight between both legs influence motor performance during gait initiation, it is not known whether and how such changes affect a person's postural stability during this task. The aim of this study was to investigate the effects of changing initial body weight distribution between legs on mediolateral postural stability during gait initiation. Changes in body weight distribution were induced under experimental conditions by modifying the frontal plane distribution of an external load located at the participants' waists. Fifteen healthy adults performed a gait initiation series at a similar speed under three conditions: with the overload evenly distributed over both legs; with the overload strictly distributed over the swing-limb side; and with the overload strictly distributed over the stance-leg side. Our results showed that the mediolateral location of center-of-mass (CoM) during the initial upright posture differed between the experimental conditions, indicating modifications in the initial distribution of body weight between the legs according to the load distribution. While the parameters related to the forward progression remained unchanged, the alterations in body weight distribution elicited adaptive changes in the amplitude of APA in the mediolateral direction (i.e., maximal mediolateral shift of the center of pressure (CoP)), without variation in their duration. Specifically, it was observed that the amplitude of APA was modulated in such a way that mediolateral dynamic stability at swing foot-contact, quantified by the margin of stability (i.e., the distance between the base of support boundary and the extrapolated CoM position), did not vary between the conditions. These findings suggest that APA seem to be scaled as a function of the initial body weight distribution between both legs so as to maintain optimal conditions of stability during gait initiation.

摘要

在步态起始过程中,预期姿势调整(APA)先于第一步的执行。人们普遍认为,这些APA有助于向前推进,同时在步执行过程中还能在内外侧方向稳定整个身体。尽管先前的研究表明,双腿之间体重分布的变化会影响步态起始过程中的运动表现,但尚不清楚这种变化是否以及如何影响此人在此任务期间的姿势稳定性。本研究的目的是调查改变双腿之间的初始体重分布对步态起始期间内外侧姿势稳定性的影响。在实验条件下,通过改变位于参与者腰部的外部负荷的额面分布来引起体重分布的变化。15名健康成年人在三种条件下以相似的速度进行步态起始系列实验:负荷均匀分布在双腿上;负荷严格分布在摆动腿一侧;负荷严格分布在支撑腿一侧。我们的结果表明,初始直立姿势期间质心(CoM)的内外侧位置在实验条件之间存在差异,这表明根据负荷分布,双腿之间的初始体重分布发生了改变。虽然与向前推进相关的参数保持不变,但体重分布的改变引发了APA在内外侧方向上幅度的适应性变化(即压力中心(CoP)的最大内外侧偏移),其持续时间没有变化。具体而言,观察到APA的幅度以这样一种方式进行调节,即通过稳定性裕度(即支撑边界基部与外推CoM位置之间的距离)量化的摆动脚接触时的内外侧动态稳定性在各条件之间没有变化。这些发现表明,APA似乎根据双腿之间的初始体重分布进行缩放,以便在步态起始期间维持最佳的稳定性条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/471b/5366317/10eab09302a6/fnhum-11-00127-g0001.jpg

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