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Muscle coordination limits efficiency and power output of human limb movement under a wide range of mechanical demands

机译:在各种各样的机械要求下肌肉协调会限制人肢运动的效率和动力输出

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摘要

This study investigated the influence of cycle frequency and workload on muscle coordination and the ensuing relationship with mechanical efficiency and power output of human limb movement. Eleven trained cyclists completed an array of cycle frequency (cadence)-power output conditions while excitation from 10 leg muscles and power output were recorded. Mechanical efficiency was maximized at increasing cadences for increasing power outputs and corresponded to muscle coordination and muscle fiber type recruitment that minimized both the total muscle excitation across all muscles and the ineffective pedal forces. Also, maximum efficiency was characterized by muscle coordination at the top and bottom of the pedal cycle and progressive excitation through the uniarticulate knee, hip, and ankle muscles. Inefficiencies were characterized by excessive excitation of biarticulate muscles and larger duty cycles. Power output and efficiency were limited by the duration of muscle excitation beyond a critical cadence (120–140 rpm), with larger duty cycles and disproportionate increases in muscle excitation suggesting deteriorating muscle coordination and limitations of the activation-deactivation capabilities. Most muscles displayed systematic phase shifts of the muscle excitation relative to the pedal cycle that were dependent on cadence and, to a lesser extent, power output. Phase shifts were different for each muscle, thereby altering their mechanical contribution to the pedaling action. This study shows that muscle coordination is a key determinant of mechanical efficiency and power output of limb movement across a wide range of mechanical demands and that the excitation and coordination of the muscles is limited at very high cycle frequencies.
机译:这项研究调查了循环频率和工作量对肌肉协调性的影响,以及与人体肢体运动的机械效率和功率输出之间的关系。 11名训练有素的自行车手完成了一系列的循环频率(踏频)-功率输出条件,同时记录了来自10条腿部肌肉的兴奋和功率输出。在增加脚踏圈速以增加动力输出时,机械效率达到最大,并且与肌肉协调和肌肉纤维类型恢复相对应,从而使所有肌肉的总肌肉兴奋度和无效踏板力最小化。而且,最大效率的特征在于踏板循环的顶部和底部的肌肉协调性以及通过单关节的膝盖,臀部和踝部肌肉的逐步激励。低效率的特征在于过度表达双关节肌肉和更大的占空比。功率输出和效率受到超过关键节奏(120-140 rpm)的肌肉刺激持续时间的限制,占空比更大,并且肌肉刺激的增加不成比例,这表明肌肉协调性恶化和激活-停用能力受到限制。大多数肌肉表现出相对于踏板周期的肌肉兴奋的系统性相移,该相移取决于脚踏圈速,并在较小程度上取决于功率输出。每个肌肉的相移是不同的,从而改变了它们对踩踏动作的机械作用。这项研究表明,肌肉协调性是决定各种肢体运动中肢体运动的机械效率和动力输出的关键决定因素,并且在非常高的循环频率下,肌肉的兴奋和协调受到限制。

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