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人体急性被动拉伸后骨骼肌对电刺激的电反应和机械反应:肌电图和肌动图联合研究方法

Electrical and mechanical response of skeletal muscle to electrical stimulation after acute passive stretching in humans: a combined electromyographic and mechanomyographic approach.

作者信息

Cè Emiliano, Paracchino Elena, Esposito Fabio

机构信息

Institute of Physical Exercise, Health and Sport, University of Milan, Milan, Italy.

出版信息

J Sports Sci. 2008 Dec;26(14):1567-77. doi: 10.1080/02640410802277429.

Abstract

Two mechanisms have been suggested to explain stretching-induced maximum force depression: a mechanical alteration in the stretched muscle and an impairment of neural activation. Electrical stimulation allows standardization of the level of muscle activation without being limited by neural control. The aim of this study was to evaluate the stretching-induced changes in the electrical and mechanical properties of muscle during electrically elicited contractions. Twelve participants (age 22 +/- 1 years; body mass 75 +/- 2 kg; stature 1.79 +/- 0.02 m; mean +/- standard error) underwent six electrical stimulations of the medial gastrocnemius muscle before and after stretching. During the contractions, surface electromyogram (EMG) and mechanomyogram (MMG) were recorded simultaneously together with force. After stretching we found: (i) no differences in EMG parameters; (ii) MMG amplitude decreased by 4 +/- 1% (P < 0.05); and (iii) the peak force, the peak rate of force development, and the acceleration peak of force development decreased by 12 +/- 3%, 14 +/- 1%, and 24 +/- 5%, respectively (P < 0.05). In conclusion, acute passive stretching did not change EMG properties but altered the mechanical characteristics of the contracting muscle. Indeed, muscle force-generating capacity and stiffness of the muscle-tendon unit were significantly impaired.

摘要

已有两种机制被提出用以解释拉伸诱导的最大力量下降

拉伸肌肉的机械性改变以及神经激活受损。电刺激可使肌肉激活水平标准化,而不受神经控制的限制。本研究的目的是评估在电诱发收缩过程中,拉伸引起的肌肉电学和力学特性变化。12名参与者(年龄22±1岁;体重75±2千克;身高1.79±0.02米;平均值±标准误)在拉伸前后接受了6次对腓肠肌内侧的电刺激。在收缩过程中,同步记录表面肌电图(EMG)、机械肌电图(MMG)以及力量。拉伸后我们发现:(i)EMG参数无差异;(ii)MMG幅度下降了4±1%(P<0.05);(iii)峰值力量、力量发展峰值速率以及力量发展加速度峰值分别下降了12±3%、14±1%和24±5%(P<0.05)。总之,急性被动拉伸并未改变EMG特性,但改变了收缩肌肉的力学特性。实际上,肌肉产生力量的能力以及肌腱单元的刚度均受到显著损害。

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