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首页> 外文期刊>European journal of applied physiology >Effect of lower limb muscle fatigue on anticipatory postural adjustments associated with bilateral-forward reach in the unipedal dominant and non-dominant stance.
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Effect of lower limb muscle fatigue on anticipatory postural adjustments associated with bilateral-forward reach in the unipedal dominant and non-dominant stance.

机译:下肢肌肉疲劳对单足显性和非显性姿势中与双侧向前伸展相关的预期姿势调整的影响。

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摘要

Voluntary arm movements are preceded by dynamical and electromyographical (EMG) phenomena in "postural segments" (i.e. body segments not directly involved in the voluntary movement) called "anticipatory postural adjustments" (APA). The present study examined how the central nervous system organizes APA under fatigued state of postural musculature elicited by series of high-level isometric contractions (HIC), i.e. corresponding to 60% of maximal voluntary contraction. Subjects (N = 14) purposely performed series of bilateral-forward reach task (BFR) under unipodal stance (dominant and non-dominant) before ("no fatigue" condition, NF) and after ("fatigue" condition, F) a procedure designed to obtain major fatigue in hamstrings. Centre-of-gravity acceleration, centre-of-pressure displacement, and electrical activity of trunk and leg muscles were recorded and quantified within a time-window typical of APA. Results showed that there was no significant effect of fatigue on the level of muscle excitation and APA onset in any of the postural muscles recorded. Similarly, no change in APA onset could be detected from the biomechanical traces. In contrast, results showed that the amplitude of anticipatory centre-of-pressure displacement and centre-of-gravity acceleration reached lower value in F than in NF. Similar results were obtained whether dominant or non-dominant leg was considered. The changes in biomechanical APA features could not be ascribed to a different focal movement performance (maximal BFR velocity and acceleration) between F and NF. These results suggest that, when fatigue is induced by HIC, the capacity of the central nervous system to adapt APA programming to the fatigued state of the postural muscle system might be altered.
机译:自愿手臂运动之前,在称为“预期姿势调整”(APA)的“姿势部分”(即不直接参与自愿运动的身体部分)中出现动态和肌电(EMG)现象。本研究研究了在一系列高等距收缩(HIC)引起的姿势肌肉疲劳的状态下中枢神经系统如何组织APA,即相当于最大自愿收缩的60%。受试者(N = 14)在(“无疲劳”状态,NF)之前和之后(“疲劳”状态,F)的单足姿势(显性和非显性)下有目的地执行了一系列双侧前伸任务(BFR)旨在使大腿筋疲劳。在APA典型的时间窗口内记录并量化重心加速度,压力中心位移以及躯干和腿部肌肉的电活动。结果显示,疲劳对记录的任何姿势肌肉的肌肉兴奋水平和APA发作均无显着影响。同样,从生物力学痕迹中也无法检测到APA发作的变化。相反,结果表明,F中预期的压力中心位移幅度和重心加速度的幅度低于NF。无论考虑到优势腿还是非优势腿,都获得了相似的结果。生物力学APA功能的变化不能归因于F和NF之间的焦点移动性能不同(最大BFR速度和加速度)。这些结果表明,当HIC引起疲劳时,中枢神经系统使APA编程适应姿势性肌肉系统疲劳状态的能力可能会改变。

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