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Muscle synergies at the elbow in static and oscillating isometric torque tasks with dual degrees of freedom

机译:具有双自由度的静态和振荡等距扭矩任务中肘部的肌肉协同作用

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摘要

This study\u27s aim was to identify the effect of oscillation of torques in isometric tasks under identical mechanical conditions on the muscle synergies used. It was hypothesized that bi-functional muscles would play a lesser role in torque oscillation, because they would also generate an undesired oscillation. Thus, changes in muscle synergies were expected as a consequence of oscillation in torque generation. The effect of the trajectory of torque generation was investigated in dual-degrees-of-freedom submaximal isometric oscillation torque tasks at the elbow. The torques were flexion-extension and supination-pronation. Oscillation torques were compared with static torque generations at four torque positions during oscillation. Muscle activity was determined with surface electromyography. Compared with the static torque tasks, the oscillation tasks showed an overall increased muscle activity. The oscillation tasks, however, showed similar activity patterns and muscle synergies compared to the static composite tasks. It was found that the motor system is well able to control different orthogonal combinations of slow torque oscillations and constant torques by employing a single oscillating muscle synergy.
机译:这项研究的目的是确定在相同机械条件下等距任务中扭矩振荡对所用肌肉协同作用的影响。据推测,双功能肌肉在转矩振荡中的作用较小,因为它们也会产生不希望的振荡。因此,由于产生扭矩的振荡,预期肌肉协同作用会发生变化。在肘关节的双自由度次最大等距振荡扭矩任务中研究了扭矩产生轨迹的影响。扭矩为屈伸和旋后旋前。将振荡期间的振荡转矩与四个转矩位置处的静态转矩生成进行了比较。用表面肌电图测定肌肉活性。与静态扭矩任务相比,振荡任务显示出肌肉活动总体增加。然而,与静态复合任务相比,振荡任务显示出相似的活动模式和肌肉协同作用。已经发现,通过采用单个振荡的肌肉协同作用,电动机系统能够很好地控制慢转矩振荡和恒定转矩的不同正交组合。

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