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肌肉疲劳对步态起始时预期姿势调整的影响。

Impact of muscle fatigue on anticipatory postural adjustments during gait initiation.

作者信息

Storniolo Jorge L, Farinelli Veronica, Esposti Roberto, Cavallari Paolo

机构信息

Human Physiology Section of the Department of Pathophysiology and Transplantation, Università Degli Studi, Milano, Italy.

Laboratorio Sperimentale di Fisiopatologia Neuromotoria, IRCCS Istituto Auxologico Italiano, Meda, Italy.

出版信息

Front Physiol. 2025 Jan 13;15:1520578. doi: 10.3389/fphys.2024.1520578. eCollection 2024.

Abstract

INTRODUCTION

Prolonged or strenuous exercise leads to a temporary decrease in muscle function and performance, which interferes with activity of both prime movers and postural muscles. This effect of fatigue has been reported both for single segment movements and for locomotion. However, little is known regarding the effects of fatigue on anticipatory postural adjustments (APAs) during gait initiation, a task in which the control of focal movement should be strictly coupled to a feedforward control of posture.

METHODS

We studied APAs during gait initiation in 16 healthy well-trained adult males, searching for muscle activities that precede the backward shift of the Center of Pressure (CoP). Participants stood on a force plate for about 10 s and then started walking at their natural speed. APAs were evaluated before and after a 1 min exhausting sequence of countermovement jumps. An optoelectronic system captured the heel-off events while a force plate measured the CoP position and vertical ground reaction force. Wireless probes recorded the electromyogram of trunk and leg muscles from both sides.

RESULTS

It was observed that muscle fatigue delayed excitatory and inhibitory APAs, of about 40 and 80 ms, respectively, and a parallel delay was induced on prime movers; moreover, velocity and amplitude of backward CoP shift were reduced. Regarding APAs sign and occurrence, most of the participants showed bilateral inhibition in dorsal muscles and excitation in the ventral ones, displaying a forward "diving" strategy that was almost unaffected by fatigue. However, after fatigue, three of the "diving" participants switched to a "turning" strategy, i.e., they displayed a reciprocal activation/inhibition pattern in the dorsal muscles, compatible with a trunk rotation.

DISCUSSION

The "turning" strategy has been previously described in untrained individuals and in a toes-amputee mountain climber, who showed a "diving" approach to gait initiation when wearing his prosthetic shoes and switched to the "turning" approach when barefoot. Altogether, these results support the idea that one and the same person may develop a repertoire of postural strategies among which the central nervous system will choose, according to the personal fitness and the constraints in which the action is performed.

摘要

引言

长时间或剧烈运动导致肌肉功能和表现暂时下降,这会干扰原动肌和姿势肌的活动。这种疲劳效应在单节段运动和行走中均有报道。然而,关于疲劳对步态起始时预期姿势调整(APA)的影响知之甚少,在该任务中,局部运动的控制应与姿势的前馈控制严格耦合。

方法

我们研究了16名健康且训练有素的成年男性在步态起始时的APA,寻找压力中心(CoP)向后移动之前的肌肉活动。参与者站在测力板上约10秒,然后以自然速度开始行走。在进行1分钟的深蹲跳疲劳序列前后评估APA。一个光电系统记录足跟离地事件,同时测力板测量CoP位置和垂直地面反作用力。无线探头记录双侧躯干和腿部肌肉的肌电图。

结果

观察到肌肉疲劳分别延迟了兴奋性和抑制性APA约40毫秒和80毫秒,并且原动肌也出现了平行延迟;此外,CoP向后移动的速度和幅度降低。关于APA的信号和发生情况,大多数参与者在背部肌肉表现出双侧抑制,在腹部肌肉表现出兴奋,呈现出一种向前的“俯冲”策略,该策略几乎不受疲劳影响。然而,疲劳后,三名采用“俯冲”策略的参与者转变为“扭转”策略,即他们在背部肌肉表现出相互激活/抑制模式,与躯干旋转一致。

讨论

“扭转”策略先前在未经训练的个体和一名脚趾截肢的登山者中被描述过,后者在穿着假肢鞋时步态起始采用“俯冲”方法,而赤脚时则转变为“扭转”方法。总之,这些结果支持了这样一种观点,即同一个人可能会形成一系列姿势策略,中枢神经系统会根据个人健康状况和行动时的限制从中进行选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed77/11770096/27b7e470b52c/fphys-15-1520578-g001.jpg

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