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首页> 外文期刊>Journal of Neurophysiology >Recruitment order of motor units in human vastus lateralis muscle is maintained during fatiguing contractions.
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Recruitment order of motor units in human vastus lateralis muscle is maintained during fatiguing contractions.

机译:在疲劳性收缩过程中,维持了人类股外侧肌运动单元的招聘顺序。

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Motor-unit firing patterns were studied in the vastus lateralis muscle of five healthy young men [21.4 +/- 0.9 (SD) yr] during a series of isometric knee extensions performed to exhaustion. Each contraction was held at a constant torque level, set to 20% of the maximal voluntary contraction at the beginning of the experiment. Electromyographic signals, recorded via a quadrifilar fine wire electrode, were processed with the precision decomposition technique to identify the firing times of individual motor units. In repeat experiments, whole-muscle mechanical properties were measured during the fatigue protocol using electrical stimulation. The main findings were a monotonic decrease in the recruitment threshold of all motor units and the progressive recruitment of new units, all without a change of the recruitment order. Motor units from the same subject showed a similar time course of threshold decline, but this decline varied among subjects (mean threshold decrease ranged from 23 to 73%). The mean threshold decline was linearly correlated (R2 >/= 0.96) with a decline in the elicited peak tetanic torque. In summary, the maintenance of recruitment order during fatigue strongly supports the notion that the observed common recruitment adaptations were a direct consequence of an increased excitatory drive to the motor unit pool. It is suggested that the increased central drive was necessary to compensate for the loss in force output from motor units whose muscle fibers were actively contracting. We therefore conclude that the control scheme of motor-unit recruitment remains invariant during fatigue at least in relatively large muscles performing submaximal isometric contractions.
机译:在一系列等距的膝盖伸展运动至疲惫期间,研究了五个健康年轻人[21.4 +/- 0.9(SD)yr]的股外侧肌的运动单位放电模式。每次收缩均保持恒定的扭矩水平,该扭矩水平应设置为实验开始时最大自愿收缩的20%。通过四线细丝电极记录的肌电信号经过精密分解技术处理,以识别单个电机的点火时间。在重复实验中,在疲劳方案中使用电刺激测量了整个肌肉的机械性能。主要发现是所有运动单位的招募门槛单调降低,新单位逐步招募,所有这些都没有改变招募顺序。来自同一受试者的运动单位显示出相似的阈值下降时间进程,但是该下降在受试者之间有所不同(平均阈值下降范围为23%至73%)。平均阈值下降与引起的峰值强直性扭矩下降线性相关(R2> / = 0.96)。总而言之,在疲劳过程中维持招聘秩序是强烈支持以下观点的:观察到的常见招聘适应性是运动单元池兴奋性驱动增加的直接结果。建议增加中央驱动器以补偿肌肉纤维主动收缩的运动单元的输出力损失。因此,我们得出结论,至少在进行次最大等距收缩的相对较大的肌肉中,疲劳期间运动单元募集的控制方案保持不变。

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