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Motor unit control in human vastus lateralis muscle during fatigue

机译:疲劳期间人股外侧肌的运动单位控制

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We investigated the motor unit firing behavior of the vastus lateralis muscle during a sequence of isometric constant-torque contractions maintained at 20% of the maximum voluntary contraction and repeated to exhaustion. Electromyographic signals were recorded via quadrifilar fine wire electrodes and decomposed into their constituent action potentials to obtain the motor unit firing times. In addition, we measured the whole-muscle mechanical properties during the fatigue protocol using electrical stimulation. In four out of five subjects, the firing rate of motor units first decreased within the first 10% - 20% of the endurance time and then increased. The firing rate increase was accompanied by an increase in the number of motor units recruited to reach and maintain the constant target torque. The elicited twitch and tetanic torque responses first increased and then decreased. In one subject, the initial decrease in firing rate was absent, but so was the increase in the torque response. Overall, the two processes followed the same time course and complemented each other. These data are consistent with an activation of the motor unit pool via a common drive that adjusts to compensate for the potentiation and diminution of the mechanical output of the muscle fibers.
机译:我们在一系列等距恒定扭矩收缩期间调查了瓦斯特鲁斯侧肌的电机单元射击行为,保持在最大自愿收缩的20%并重复耗尽。通过四极细线电极记录电拍摄信号,并分解成它们的组成作用电位以获得电动机单元烧制时间。此外,我们使用电刺激测量疲劳方案期间的全肌肉机械性能。在五个受试者中有四个,电机单元的烧制率首先在耐久性时间的前10% - 20%内减少,然后增加。烧制率增加伴随着招募以达到和维持恒定目标扭矩的电机单元数量的增加。首先增加了引发的抽搐和滴答物扭矩响应,然后减少。在一个受试者中,射击率的初始降低不存在,但扭矩响应的增加是如此。总的来说,这两个过程遵循相同的时间课程并相互补充。这些数据通过公共驱动器通过调节的公共驱动器激活电动机单元池,以补偿肌纤维的机械输出的电压和减少。

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