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离心运动诱导的疲劳对目标导向运动中位置觉的影响。

The effects of eccentric exercise-induced fatigue on position sense during goal-directed movement.

作者信息

Grose George, Manzone Damian M, Eschelmuller Gregg, Peters Ryan M, Carpenter Mark G, Inglis J Timothy, Chua Romeo

机构信息

School of Kinesiology, University of British Columbia, Vancouver, British Columbia, Canada.

Faculty of Kinesiology and Physical Education, University of Toronto, Toronto, Ontario, Canada.

出版信息

J Appl Physiol (1985). 2022 Apr 1;132(4):1005-1019. doi: 10.1152/japplphysiol.00177.2021. Epub 2022 Mar 10.

Abstract

We investigated the impairment of position sense associated with muscle fatigue. In , participants performed learned eccentric extension (22°/s) movements of the elbow as the arm was pulled through the horizontal plane without vision of the arm. They opened their closed right hand when they judged it to be passing through a target. Dynamic position sense was assessed via accuracy of limb position to the target at the time of hand opening. Eccentric movements were performed against a flexion load [10% of flexion maximum voluntary contractions (MVCs)]. We investigated performance under conditions with and without biceps vibration, as well as before and after eccentric exercise. In , a motor was used to extend the participant's limb passively. We compared conditions with and without vibration of the lengthening but passive biceps, before and after exercise. In , vibration of the active biceps resulted in participants opening their hands earlier [mean, [Formula: see text] (95% confidence interval, CI) -5.52° (-7.40, -3.63)] compared with without vibration. Exercise reduced flexion MVCs by ∼44%, and participants undershot the target more [-5.51° (-9.31, -1.70)] in the post-exercise block during control trials. Exercise did not influence the persistence of the vibratory illusion. In , vibration resulted in greater undershooting [-2.99° (-3.99, -1.98)] compared with without vibration, before and after exercise. Although exercise reduced MVCs by ∼50%, the passive task showed no effects of exercise. We suggest that the central nervous system continues to rely on muscle spindles for limb position sense, even when they reside in a muscle exposed to fatiguing eccentric contractions. Dynamic position errors were examined in an eccentric and a passive elbow extension proprioceptive-targeting task, before and after eccentric exercise, with and without muscle vibration. Participants actively undershot the target more when fatigued while fatigue did not exacerbate task accuracy during passive movement. Vibration caused undershoots regardless of fatigue state during active and passive movements. We propose that the central nervous system continues to rely on muscle spindles for kinesthesia, even when they reside in a fatigued muscle.

摘要

我们研究了与肌肉疲劳相关的位置觉损害。在实验中,参与者在看不到手臂的情况下,将手臂拉过水平面,进行习得的离心伸展(22°/s)肘部运动。当他们判断右手经过目标时,打开紧握的右手。通过手打开时肢体位置相对于目标的准确性来评估动态位置觉。离心运动是在屈曲负荷[屈曲最大自主收缩(MVC)的10%]下进行的。我们研究了在有和没有肱二头肌振动的条件下,以及离心运动前后的表现。在实验中,使用电机被动伸展参与者的肢体。我们比较了运动前后,有和没有延长但被动的肱二头肌振动的情况。在实验中,与无振动相比,主动肱二头肌振动导致参与者更早打开手[平均值,[公式:见正文](95%置信区间,CI)-5.52°(-7.40,-3.63)]。运动使屈曲MVC降低了约44%,在对照试验的运动后阶段,参与者更频繁地未达到目标[-5.51°(-9.31,-1.70)]。运动不影响振动错觉的持续时间。在实验中,与无振动相比,运动前后振动导致更大的未达到目标情况[-2.99°(-3.99,-1.98)]。尽管运动使MVC降低了约50%,但被动任务未显示出运动的影响。我们认为,即使肌梭存在于经历疲劳性离心收缩的肌肉中,中枢神经系统仍继续依赖肌梭来感知肢体位置。在离心运动前后,有和没有肌肉振动的情况下,在离心和被动肘部伸展本体感觉靶向任务中检查了动态位置误差。疲劳时参与者主动未达到目标的情况更多,而疲劳并未加剧被动运动期间的任务准确性。无论在主动和被动运动中疲劳状态如何,振动都会导致未达到目标。我们提出,即使肌梭存在于疲劳的肌肉中,中枢神经系统仍继续依赖肌梭进行动觉。

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