首页> 美国卫生研究院文献>The Journal of Physiology >Changes in motoneurone firing rates during sustained maximal voluntary contractions.
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Changes in motoneurone firing rates during sustained maximal voluntary contractions.

机译:持续最大自主收缩期间运动神经元放电速率的变化。

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摘要

Tungsten micro-electrodes have been used to record the electrical activity of single motor units in the human adductor pollicis during maximal voluntary contractions. The potentials were characteristic of those from single muscle fibres. In brief maximal contractions, the firing rates of over 200 motor units were obtained from five normal subjects. Four subjects had a similar range (mean 26.4 +/- 6.5 Hz) while the fifth was slightly higher (35 +/- 7.4 Hz). When maximal voluntary force was sustained for 40-120 s, there was a progressive decline in the range and mean rate of motor-unit discharge. In the first 60 s, mean rates fell from about 27 Hz to 15 Hz. There was some evidence to suggest that those units with the highest initial frequencies changed rate most rapidly. It is suggested that this decline in motor unit discharge rates is not responsible for force loss, but that it may enable effective modulation of voluntary strength by rate coding to continue during fatigue.
机译:钨微电极已用于记录人类最大内收肌收缩过程中人类内收肌的单个运动单位的电活动。潜力是单条肌纤维的潜力。在短暂的最大收缩中,从五名正常受试者获得了200多个运动单位的开火率。四名受试者具有相似的范围(平均26.4 +/- 6.5 Hz),而第五名则略高(35 +/- 7.4 Hz)。当最大自愿力量持续40-120 s时,运动单位放电的范围和平均速率逐渐下降。在最初的60 s中,平均速率从大约27 Hz下降到15 Hz。有证据表明,那些具有最高初始频率的单元变化速度最快。建议电机单元放电速率的这种下降不是造成力损失的原因,而是可以通过在疲劳期间继续进行速率编码来有效调节自发强度。

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