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人类运动单位的放电行为。

Motor unit firing behavior in man.

作者信息

Masakado Y

机构信息

Department of Rehabilitation Medicine, School of Medicine, Keio University, Tokyo, Japan.

出版信息

Keio J Med. 1994 Sep;43(3):137-42. doi: 10.2302/kjm.43.137.

Abstract

Studies on motor unit firing behavior in man by the decomposition technique are described. The decomposition technique identifies motor unit firing with 100% accuracy at force levels of greater than 80% maximal voluntary contraction (MVC). In all muscles examined, the higher the recruitment threshold of the motor unit, the lower the rate at which it fired at the target level. Smaller muscles, such as those in the hand, recruit their motor units at 0-50% MVC and rely exclusively on firing rate increases to augment force output at 50-100% MVC. Larger muscles, such as those in the leg or arm, recruit motor units at least to 90% MCV, and possibly higher. Their firing rates have a relatively smaller dynamic swing. Thus, smaller muscles rely primarily on firing rate and larger muscles rely primarily on recruitment to modulate their force. High cross-correlation functions in firing rate behavior within a muscle were observed between individual motor unit firing rates at constant force isometric contraction. Thus the nervous system does not control the firing rate of motor units individually. Instead, it acts on the pool of homonymous motoneurons in a uniform fashion. Electrical stimulation of cutaneous receptors tends to increase the recruitment thresholds of low-threshold motor units and to decrease their firing rates, while high-threshold motor units generally exhibit a decrease in recruitment threshold and an increase in firing rate.

摘要

本文描述了通过分解技术对人体运动单位放电行为的研究。分解技术在大于80%最大自主收缩(MVC)的力水平下,能100%准确识别运动单位放电。在所有检查的肌肉中,运动单位的募集阈值越高,其在目标水平的放电频率越低。较小的肌肉,如手部肌肉,在0 - 50%MVC时募集运动单位,在50 - 100%MVC时完全依靠增加放电频率来增强力量输出。较大的肌肉,如腿部或手臂的肌肉,至少在90%MVC时募集运动单位,甚至可能更高。它们的放电频率动态变化相对较小。因此,较小的肌肉主要依靠放电频率,而较大的肌肉主要依靠募集来调节其力量。在恒定力等长收缩时,观察到肌肉内单个运动单位放电频率之间的放电频率行为具有高度互相关函数。因此,神经系统并非单独控制运动单位的放电频率。相反,它以统一的方式作用于同名运动神经元池。皮肤感受器的电刺激往往会增加低阈值运动单位的募集阈值并降低其放电频率,而高阈值运动单位通常表现出募集阈值降低和放电频率增加。

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