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人体中主动肌-拮抗肌振动的感知与运动效应

Perceptual and motor effects of agonist-antagonist muscle vibration in man.

作者信息

Gilhodes J C, Roll J P, Tardy-Gervet M F

出版信息

Exp Brain Res. 1986;61(2):395-402. doi: 10.1007/BF00239528.

Abstract

Perceptual and motor effects of vibration applied simultaneously to the distal tendons of the Biceps and Triceps muscles, in isometric conditions and without sight of the stimulated arm, have been studied in human volunteers. Motor effects, measured by surface EMG, are inexistent when the flexor and extensor muscles are simultaneously vibrated at the same frequency. However, EMG activity appears in the muscle being vibrated at the lower frequency when simultaneous vibration is applied at different frequencies. The sensations felt by the subjects were reproduced by the nonvibrated arm and recorded by a goniometer. The studies show that the velocity and the amplitude of the ilusory movement is related to the difference in vibration frequency applied to the two muscles. The direction of movement felt (flexion or extension) is that produced by shortening of the muscle being vibrated at the lower frequency. When the two vibration frequencies are the same, there is either no sensation of movement, or a sensation of very slow movement. These results support the notion that the sensation of movement at a joint may be derived from a central processing of the proprioceptive inflow data obtained from flexor and extensor muscles. This interpretation may also be valid for the results obtained earlier by vibration of a single muscle. Furthermore, it is coherent with data on spindle afferent fibres obtained by microneurography in man during passive or active movements.

摘要

在人体志愿者中,研究了在等长条件下且不看受刺激手臂时,同时对肱二头肌和肱三头肌远端肌腱施加振动所产生的感知和运动效应。当屈肌和伸肌以相同频率同时振动时,通过表面肌电图测量的运动效应不存在。然而,当以不同频率同时施加振动时,较低频率振动的肌肉会出现肌电图活动。受试者所感受到的感觉由未振动的手臂重现,并由角度计记录。研究表明,虚幻运动的速度和幅度与施加于两块肌肉的振动频率差异有关。所感觉到的运动方向(屈曲或伸展)是由较低频率振动的肌肉缩短所产生的方向。当两个振动频率相同时,要么没有运动感觉,要么有非常缓慢的运动感觉。这些结果支持了这样一种观点,即关节处的运动感觉可能源于对从屈肌和伸肌获得的数据进行的本体感觉传入的中枢处理。这种解释对于早期通过单一肌肉振动获得的结果也可能是有效的。此外,它与在人体被动或主动运动期间通过微神经ography获得的关于肌梭传入纤维的数据是一致的。

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