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肌肉振动对预期姿势调整的影响。

The effects of muscle vibration on anticipatory postural adjustments.

作者信息

Slijper Harm, Latash Mark L

机构信息

Department of Kinesiology, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Brain Res. 2004 Jul 23;1015(1-2):57-72. doi: 10.1016/j.brainres.2004.04.054.

Abstract

The current study investigated the influence of changes in sensory information related to postural stability on anticipatory postural adjustments (APAs) in standing subjects. Subjects performed fast arm movements and a load release task while standing on a stable force platform or on an unstable board. We manipulated sensory information through vibration of the Achilles tendons and additional finger touch (contact forces under 1 N). Changes in the background activity of leg, trunk, and arm muscles and displacements of the center of pressure (COP) were quantified within time intervals typical for APAs. In the arm movement task, leg and trunk muscles showed a significant drop in the APAs with finger touch, while the vibration and standing on the unstable board each led to an increase in the APA magnitude. In the load release task, ventral muscles decreased their APA activity with touch, while dorsal muscles showed increased inhibition during APAs. During vibration, dorsal and ventral muscles showed increased excitation and inhibition during APAs, respectively. An additional analysis of APAs at a joint level, has shown that in both tasks, an index related to the co-activation of agonist-antagonist muscle pairs (C-index) was modulated with touch, vibration, and stability particularly in leg muscles. Small changes in the other index related to reciprocal activation (R-index) were found only in trunk muscles. Light touch and vibration induced opposing changes in the C-index, suggesting their opposite effects on the stabilization of a reference point or vertical. We conclude that the central nervous system deploys patterns of adjustments in which increased co-contraction of distal muscles and reciprocal adjustments in trunk muscles are modified to ensure equilibrium under postural instability.

摘要

本研究调查了与姿势稳定性相关的感觉信息变化对站立受试者预期姿势调整(APA)的影响。受试者在稳定的测力平台或不稳定的木板上站立时进行快速手臂运动和负载释放任务。我们通过跟腱振动和额外的手指触摸(接触力低于1 N)来操纵感觉信息。在APA典型的时间间隔内,对腿部、躯干和手臂肌肉的背景活动变化以及压力中心(COP)的位移进行了量化。在手臂运动任务中,手指触摸时腿部和躯干肌肉的APA显著下降,而振动和站在不稳定木板上均导致APA幅度增加。在负载释放任务中,腹侧肌肉在触摸时降低了其APA活动,而背侧肌肉在APA期间表现出增强的抑制作用。在振动期间,背侧和腹侧肌肉在APA期间分别表现出增强的兴奋和抑制作用。在关节水平对APA进行的额外分析表明,在两项任务中,与 agonist-antagonist 肌肉对的共同激活相关的指数(C指数)在触摸、振动和稳定性作用下尤其在腿部肌肉中受到调节。仅在躯干肌肉中发现了与交互激活相关的另一个指数(R指数)的微小变化。轻触和振动在C指数上引起相反的变化,表明它们对参考点或垂直方向稳定的相反作用。我们得出结论,中枢神经系统部署调整模式,其中远端肌肉的共同收缩增加以及躯干肌肉的交互调整被修改,以确保在姿势不稳定情况下的平衡。

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