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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >SPECTRAL PROPERTIES OF MULTIPLE MYOELECTRIC SIGNALS: NEW INSIGHTS INTO THE NEURAL ORIGIN OF MUSCLE SYNERGIES
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SPECTRAL PROPERTIES OF MULTIPLE MYOELECTRIC SIGNALS: NEW INSIGHTS INTO THE NEURAL ORIGIN OF MUSCLE SYNERGIES

机译:多电磁信号的光谱特性:新见解肌肉协同的神经源

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摘要

It is still unclear if muscle synergies reflect neural strategies or mirror the underlying mechanical constraints. Therefore, this study aimed to verify the consistency of muscle groupings between the synergies based on the linear envelope (LE) of muscle activities and those incorporating the time frequency (TF) features of the electromyographic (EMG) signals. Twelve healthy participants performed six 20-m walking trials at a comfort and fast self-selected speed, while the activity of eleven lower limb muscles was recorded by means of surface EMG. Wavelet transformed EMG was used to obtain the TF pattern and muscle synergies were extracted by non-negative matrix factorization. When five muscle synergies were extracted, both methods defined similar muscle groupings whatever the walking speed. When accounting the reconstruction level of the initial dataset, a new TF synergy emerged. This new synergy dissociated the activity of the rectus femoris from those of the vastii muscles (synergy #1) and from the one of the tensor fascia latae (synergy #5). Overall, extracting TF muscle synergies supports the neural origin of muscle synergies and provides an opportunity to distinguish between prescriptive and descriptive muscle synergies. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:如果肌肉协同效应反映神经策略或镜像潜在的机械约束,则尚不清楚。因此,本研究旨在验证基于肌肉活动的线性包络(Le)的协同态之间的肌肉分组的一致性,以及包含电偏振(EMG)信号的时间频率(TF)特征的那些。十二名健康参与者以舒适性和快速的自我选择速度进行六个20米行走试验,而通过表面EMG记录11个下肢肌肉的活动。小波变换的EMG用于获得TF模式,通过非负矩阵分解提取肌肉协同作用。当提取五种肌肉协同效应时,两种方法都定义了类似的肌肉分组,无论行走速度如何。考虑初始数据集的重建水平时,新的TF协同作用出现。这个新的协同作用解开了从大角肌肉(Synergy#1)和来自张量筋膜Latae(Sy​​nergy#5)的那些活动的活性。总体而言,提取TF肌肉协同效应支持肌肉协同效应的神经起源,并提供了区分规范性和描述性肌肉协同作用的机会。 (c)2017年IBRO。 elsevier有限公司出版。保留所有权利。

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