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下肢关节疲劳运动后在改变和未改变的感觉环境中的姿势稳定性。

Postural stability in altered and unaltered sensory environments following fatiguing exercise of lower extremity joints.

作者信息

Dickin D C, Doan J B

机构信息

Department of Health, Physical Education, Recreation and Dance, University of Idaho, Moscow, Idaho 83844-2401, USA.

出版信息

Scand J Med Sci Sports. 2008 Dec;18(6):765-72. doi: 10.1111/j.1600-0838.2007.00760.x. Epub 2008 Feb 2.

Abstract

Investigations of postural recovery following controlled external perturbations have provided models for healthy and pathological balance behavior. Less work, however, has investigated postural responses related to internal perturbations of the balance system. In this study, lower extremity joint (knee, or ankle) and overall fatigue of the dominant leg provided the internal perturbations to the balance system. Postural sway was examined during unilateral dominant leg standing before and immediately following fatiguing exercise, as well as at 10, 20, and 30 min post-fatigue activity. Sway was measured in both firm and sway-referenced support surface (external perturbation) conditions. Both joint-localized fatigue and overall fatigue were found to induce impairments in postural control, which were further exacerbated by external postural perturbations. Follow-up pairwise comparisons indicated that these impairments persisted at 10 and 30 min post-fatigue. No differences in postural sway were found between fatigue locations or across any interactions between sway and fatigue location. The results indicated that muscular fatigue imposed a prolonged internal perturbation to postural control, regardless of any individual or combined joint fatigue localization. This global effect, combined with the prolonged impairment in postural response, provides support for critical contributions from a central mechanism to postural deficits due to fatigue.

摘要

对可控外部扰动后的姿势恢复进行的研究为健康和病理性平衡行为提供了模型。然而,较少有研究探讨与平衡系统内部扰动相关的姿势反应。在本研究中,优势腿的下肢关节(膝盖或脚踝)和整体疲劳为平衡系统提供了内部扰动。在疲劳运动前和运动后立即进行单侧优势腿站立时检查姿势摆动,以及在疲劳活动后10、20和30分钟时进行检查。在稳定和摆动参考支撑面(外部扰动)条件下测量摆动。发现关节局部疲劳和整体疲劳均会导致姿势控制受损,外部姿势扰动会进一步加剧这种损害。后续的两两比较表明,这些损害在疲劳后10分钟和30分钟时仍然存在。在疲劳部位之间或摆动与疲劳部位之间的任何相互作用中,未发现姿势摆动存在差异。结果表明,肌肉疲劳会对姿势控制施加长期的内部扰动,无论任何个体或联合关节疲劳定位情况如何。这种整体效应,加上姿势反应的长期损害,为中枢机制对疲劳导致的姿势缺陷的关键作用提供了支持。

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