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Muscle Synergy Analysis for Stand-Squat and Squat-Stand Tasks with sEMG Signals

机译:带有sEMG信号的深蹲和深蹲任务的肌肉协同分析

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Human walking is the composite movement of the musculoskeletal system in lower limbs. The interaction mechanism of the different muscle groups in a combination action is of great importance. To this end, under the stand-squat and squat-stand tasks, the problems of the motion model decomposition and the muscle synergy were studied in this paper. Firstly, the envelopes were extracted from acquired and de-noised surface electromyography (sEMG) signals. Secondly, the non-negative matrix factorization (NMF) algorithm was explored to decompose the four synergistic modules and the corresponding activation coefficients under the two tasks. Finally, the relationship between the muscle synergy and the lower limb movement was discussed in normal and fatigue subjects. The results show that muscle participation of each synergistic module is consistent with the physiological function, and exhibit some differences in muscle synergies between normal and fatigue states. This work can help to understand the control strategies of the nervous system in lower extremity motor and have some significance for the evaluation of limb rehabilitation.
机译:人的步行是下肢肌肉骨骼系统的复合运动。不同肌肉群在联合动作中的相互作用机制非常重要。为此,在下蹲和下蹲任务下,研究了运动模型分解和肌肉协同作用的问题。首先,从采集的和去噪的表面肌电图(sEMG)信号中提取包络。其次,探索了非负矩阵分解(NMF)算法分解两个任务下的四个协同模块和相应的激活系数。最后,在正常和疲劳受试者中讨论了肌肉协同作用与下肢运动之间的关系。结果表明,每个协同模块的肌肉参与与生理功能一致,并且在正常状态和疲劳状态之间表现出一些肌肉协同作用的差异。这项工作有助于理解下肢运动神经系统的控制策略,对评估肢体的康复能力具有重要意义。

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