Department of Physical Therapy, University of Haifa, Haifa 3498838, Israel.
National Institute for Brain and Rehabilitation Sciences-Israel, Nazareth 16470, Israel.
Rev Neurosci. 2018 Aug 28;29(6):593-612. doi: 10.1515/revneuro-2017-0058.
Muscle synergies are proposed to function as motor primitives that are modulated by frontal brain areas to construct a large repertoire of movement. This paper reviews the history of the development of our current theoretical understanding of nervous system-based motor control mechanisms and more specifically the concept of muscle synergies. Computational models of muscle synergies, especially the nonnegative matrix factorization algorithm, are discussed with specific reference to the changes in synergy control post-central nervous system (CNS) lesions. An alternative approach for motor control is suggested, exploiting a combination of synergies control or flexible muscle control used for gross motor skills and for individualized finger movements. Rehabilitation approaches, either supporting or inhibiting the use of basic movement patterns, are discussed in the context of muscle synergies. Applications are discussed for the use of advanced technologies that can promote the recovery and functioning of the human CNS after stroke.
肌肉协同作用被认为是运动的原始要素,由额叶大脑区域调节,以构建大量的运动组合。本文回顾了我们目前对基于神经系统的运动控制机制的理论理解的发展历史,特别是肌肉协同作用的概念。本文讨论了肌肉协同作用的计算模型,特别是非负矩阵分解算法,特别提到了中枢神经系统 (CNS) 损伤后协同控制的变化。本文提出了一种替代的运动控制方法,利用协同控制或灵活的肌肉控制相结合,用于粗略的运动技能和个性化的手指运动。本文讨论了肌肉协同作用背景下的康复方法,包括支持或抑制基本运动模式的使用。还讨论了在中风后促进人类中枢神经系统恢复和功能的先进技术的应用。