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协同大腿肌肉的运动神经元池共享大部分突触输入。

Motor Neuron Pools of Synergistic Thigh Muscles Share Most of Their Synaptic Input.

作者信息

Laine Christopher M, Martinez-Valdes Eduardo, Falla Deborah, Mayer Frank, Farina Dario

机构信息

Department of Neurorehabilitation Engineering, Bernstein Focus Neurotechnology Göttingen, Bernstein Centre for Computational Neuroscience, University Medical Center Göttingen, Georg August University, D-37075 Göttingen, Germany.

Department of Sports Medicine and Sports Orthopaedics, University of Potsdam, D-14469 Brandenberg, Germany, and.

出版信息

J Neurosci. 2015 Sep 2;35(35):12207-16. doi: 10.1523/JNEUROSCI.0240-15.2015.

Abstract

UNLABELLED

Neural control of synergist muscles is not well understood. Presumably, each muscle in a synergistic group receives some unique neural drive and some drive that is also shared in common with other muscles in the group. In this investigation, we sought to characterize the strength, frequency spectrum, and force dependence of the neural drive to the human vastus lateralis and vastus medialis muscles during the production of isometric knee extension forces at 10 and 30% of maximum voluntary effort. High-density surface electromyography recordings were decomposed into motor unit action potentials to examine the neural drive to each muscle. Motor unit coherence analysis was used to characterize the total neural drive to each muscle and the drive shared between muscles. Using a novel approach based on partial coherence analysis, we were also able to study specifically the neural drive unique to each muscle (not shared). The results showed that the majority of neural drive to the vasti muscles was a cross-muscle drive characterized by a force-dependent strength and bandwidth. Muscle-specific neural drive was at low frequencies (<5 Hz) and relatively weak. Frequencies of neural drive associated with afferent feedback (6-12 Hz) and with descending cortical input (∼20 Hz) were almost entirely shared by the two muscles, whereas low-frequency (<5 Hz) drive comprised shared (primary) and muscle-specific (secondary) components. This study is the first to directly investigate the extent of shared versus independent control of synergist muscles at the motor neuron level.

SIGNIFICANCE STATEMENT

Precisely how the nervous system coordinates the activity of synergist muscles is not well understood. One possibility is that muscles of a synergy share a common neural drive. In this study, we directly compared the relative strength of shared versus independent neural drive to synergistically activated thigh muscles in humans. The results of this analysis support the notion that synergistically activated muscles share most of their neural drive. Scientifically, this study addressed an important gap in our current understanding of how neural drive is delivered to synergist muscles. We have also demonstrated the feasibility of a novel approach to the study of muscle synergies based on partial coherence analysis of motor unit activity.

摘要

未标注

协同肌的神经控制尚未得到充分理解。据推测,协同肌群中的每块肌肉都接受一些独特的神经驱动以及一些与该组中其他肌肉共同共享的驱动。在本研究中,我们试图在最大自主用力的10%和30%产生等长伸膝力时,对股外侧肌和股内侧肌的神经驱动强度、频谱及力依赖性进行特征描述。高密度表面肌电图记录被分解为运动单位动作电位,以检查对每块肌肉的神经驱动。运动单位相干分析用于描述对每块肌肉的总神经驱动以及肌肉间共享的驱动。使用基于偏相干分析的新方法,我们还能够专门研究每块肌肉特有的(非共享的)神经驱动。结果表明,股四头肌的大部分神经驱动是一种跨肌肉驱动,其特征为强度和带宽与力相关。肌肉特异性神经驱动频率较低(<5Hz)且相对较弱。与传入反馈(6 - 12Hz)和下行皮质输入(约20Hz)相关的神经驱动频率几乎完全由两块肌肉共享,而低频(<5Hz)驱动包含共享(主要)和肌肉特异性(次要)成分。本研究首次在运动神经元水平直接研究协同肌共享与独立控制的程度。

意义声明

神经系统如何精确协调协同肌的活动尚未得到充分理解。一种可能性是协同肌共享共同的神经驱动。在本研究中,我们直接比较了人类协同激活的大腿肌肉共享与独立神经驱动的相对强度。该分析结果支持协同激活的肌肉共享其大部分神经驱动这一观点。从科学角度来看,本研究填补了我们目前对神经驱动如何传递至协同肌理解上的一个重要空白。我们还证明了基于运动单位活动偏相干分析的肌肉协同研究新方法的可行性。

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