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Muscle Synergies are Consistent when Pedaling Under Different Biomechanical Demands

机译:当在不同的生物力学要求下踩踏时,肌肉协同效应是一致的

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In this study we investigate the muscle coordination underlying the execution of a pedaling exercise across different biomechanical demands, by using the muscle synergies paradigm. 9 non professional subjects performed a cycling exercise using their preferred pedaling strategy (Preferred Strategy, PS) and then, through the use of a feedback based on the presentation of a real-time index of mechanical efficiency determined by means of instrumented pedals, they were helped to optimize their pedaling technique (Effective Strategy, ES). EMG activity was recorded from 8 muscles of the dominant leg. Nonnegative Matrix Factorization was applied for the extraction of muscle synergies. 4 modules were sufficient to reconstruct the repertoire of muscle activations for all the subjects during PS condition, and these modules were found consistent across all the subjects (correlation >83%). 5 muscle synergies were necessary for the characterization in ES condition; 4 out of these modules were shared with PS condition, and the resulting additional module appeared subject-specific. These preliminary results support the existence of a modular motor control in humans.
机译:在这项研究中,我们调查的肌肉协调跨不同的生物力学要求踩踏运动的执行标的,通过肌肉协同作用的范例。 9名非专业受试者使用他们的优选踏策略(优选的策略,PS),然后,通过使用基于的机械效率实时索引的呈现的反馈进行的骑自行车运动通过仪表踏板来确定,它们有助于优化其蹬踏技术(有效策略,ES)。肌电活动从惯用脚的肌肉8记录。非负矩阵分解涂敷了用于肌肉协同作用的提取。 4个模块足以重建肌肉激活的曲目为PS条件期间所有受试者,并发现这些模块在所有受试者(相关性> 83%)是一致的。 5种肌协同作用是必要的用于ES条件的表征; 4这些模块用PS条件共享,并且将所得的附加模块出现特定主题。这些初步结果支持了人类模块化电机控制的存在。

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