Comparison of muscle synergies extracted from both legs during cycling at different mechanical conditions.

Q3 Biochemistry, Genetics and Molecular Biology Australasian Physical & Engineering Sciences in Medicine Pub Date : 2019-09-01 Epub Date: 2019-06-03 DOI:10.1007/s13246-019-00767-0
Javad Esmaeili, Ali Maleki
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引用次数: 9

Abstract

Muscle synergies are the building blocks for generating movement by the central nervous system (CNS). According to this hypothesis, CNS decreases the complexity of motor control by combination of a small number of muscle synergies. The aim of this work is to investigate similarity of muscle synergies during cycling across various mechanical conditions. Twenty healthy subjects performed three 6- min cycling tasks at over a range of rotational speed (40, 50, and 60 rpm) and resistant torque (3, 5, and 7 N/m). Surface electromyography (sEMG) signals were recorded during pedaling from eight muscles of the right and left legs. We extracted four synchronous muscle synergies by using the non-negative matrix factorization (NMF) method. Mean and standard deviation of the goodness of the signal reconstruction (R2) for all subjects was obtained 0.9898 ± 0.0535. We investigated the functional roles of both leg muscles during cycling by synchronous muscle synergy extraction. We compared the muscle synergies extracted from all subjects in all mechanical conditions. The total mean and standard deviation of the similarity of synergy vectors for all subjects in all mechanical conditions was obtained 0.8788 ± 0.0709. We found the high degrees of similarity among the sets of synchronous muscle synergies across mechanical conditions and also across different subjects. Our results demonstrated that different subjects at different mechanical conditions use the same motor control strategies for cycling, despite inter-individual variability of muscle patterns.

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在不同机械条件下骑车时双腿肌肉协同作用的比较。
肌肉协同作用是中枢神经系统(CNS)产生运动的基石。根据这一假说,中枢神经系统通过联合少量的肌肉协同作用来降低运动控制的复杂性。这项工作的目的是调查肌肉协同作用的相似性在不同的机械条件下循环。20名健康受试者在转速(40、50和60 rpm)和抗扭矩(3、5和7 N/m)范围内进行3次6分钟的循环任务。在蹬车过程中记录左、右腿8块肌肉的表面肌电图信号。采用非负矩阵分解(NMF)方法提取了四种同步肌肉协同效应。所有受试者的信号重构优度的均值和标准差(R2)为0.9898±0.0535。我们通过同步肌肉协同提取研究了两腿肌肉在自行车运动中的功能作用。我们比较了所有受试者在所有机械条件下提取的肌肉协同作用。所有被试在所有力学条件下协同向量相似度的总均值和标准差为0.8788±0.0709。我们发现同步肌肉协同作用在机械条件和不同科目之间具有高度的相似性。我们的研究结果表明,尽管个体之间的肌肉模式存在差异,但不同的受试者在不同的机械条件下使用相同的运动控制策略进行骑行。
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来源期刊
CiteScore
2.00
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Australasian Physical & Engineering Sciences in Medicine (APESM) is a multidisciplinary forum for information and research on the application of physics and engineering to medicine and human physiology. APESM covers a broad range of topics that include but is not limited to: - Medical physics in radiotherapy - Medical physics in diagnostic radiology - Medical physics in nuclear medicine - Mathematical modelling applied to medicine and human biology - Clinical biomedical engineering - Feature extraction, classification of EEG, ECG, EMG, EOG, and other biomedical signals; - Medical imaging - contributions to new and improved methods; - Modelling of physiological systems - Image processing to extract information from images, e.g. fMRI, CT, etc.; - Biomechanics, especially with applications to orthopaedics. - Nanotechnology in medicine APESM offers original reviews, scientific papers, scientific notes, technical papers, educational notes, book reviews and letters to the editor. APESM is the journal of the Australasian College of Physical Scientists and Engineers in Medicine, and also the official journal of the College of Biomedical Engineers, Engineers Australia and the Asia-Oceania Federation of Organizations for Medical Physics.
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Acknowledgment of Reviewers for Volume 35 Acknowledgment of Reviewers for Volume 34 A comparison between EPSON V700 and EPSON V800 scanners for film dosimetry. Nanodosimetric understanding to the dependence of the relationship between dose-averaged lineal energy on nanoscale and LET on ion species. EPSM 2019, Engineering and Physical Sciences in Medicine : 28-30 October 2019, Perth, Australia.
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