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疲劳诱发的自发终止点——准等距用力中的非平衡相变和临界行为。

Fatigue-induced spontaneous termination point--nonequilibrium phase transitions and critical behavior in quasi-isometric exertion.

机构信息

Faculty of Physical Education, University of Ss. Cyril and Methodius, Skopje, Macedonia.

出版信息

Hum Mov Sci. 2010 Aug;29(4):483-93. doi: 10.1016/j.humov.2010.05.004.

Abstract

The aim of the present study was to unravel the integration among component processes that jointly lead to a fatigue-induced spontaneous termination point (FISTP), and to pinpoint possible mechanisms underlying this phenomenon. On 5 days during 2 weeks, six participants, who were familiar with the task, performed a quasi-isometric arm-curl exercise holding an Olympic bar with an initial elbow flexion of 90 degrees to the point of spontaneous termination of the exercise due to exhaustion. The repeated measurements ANOVA of windowed variance measures based on the time series of the elbow angles revealed a highly significant effect of the exertion time on the intra- and inter-trial enhancement of the elbow-angle variability when approaching a FISTP. Spectral analysis showed that the variability was generated predominantly in time spans of 1 to about 10s suggesting that slower and hence higher order control loops are destabilized close to termination points. There was a significant, positive correlation between termination angle and angle variability. The discontinuous change of the elbow angle at the moment of exercise termination was preceded by an enhancement of intra- and inter-trial fluctuations of the elbow angle. This may hint at a nonlinear coupling between the participating neuromuscular components or, more generally, a nonlinear dynamical process underlying the FISTP phenomenon. This dynamical characteristic may indeed explain why other accounts based on separable sites of local, physiological limitations fail to elucidate the occurrence of FISTP.

摘要

本研究旨在揭示导致疲劳诱发自发终止点(FISTP)的各组成过程的整合,并确定该现象背后可能的机制。在两周的 5 天内,6 名熟悉任务的参与者使用奥林匹克杠铃进行准等长手臂卷曲运动,初始肘部弯曲 90 度,直至因疲劳而导致运动自发终止。基于肘部角度时间序列的窗口方差测量的重复测量方差分析显示,在接近 FISTP 时,用力时间对肘部角度变异性的个体内和个体间增强具有高度显著的影响。频谱分析表明,变异性主要产生于 1 到 10 秒左右的时间范围内,这表明接近终点时较慢且因此较高阶的控制回路不稳定。终止角度与角度变异性之间存在显著的正相关。在运动终止时刻,肘部角度的不连续变化之前,肘部角度的个体内和个体间波动增强。这可能暗示参与的神经肌肉成分之间存在非线性耦合,或者更一般地说,FISTP 现象背后存在非线性动力过程。这种动力特征确实可以解释为什么基于局部、生理限制的可分离部位的其他解释无法阐明 FISTP 的发生。

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