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中枢模式发生器与人类运动:基于运动动作参照控制的探讨。

Central pattern generator and human locomotion in the context of referent control of motor actions.

机构信息

Department of Neuroscience, University of Montreal, 2900 Edouard Montpetit Blvd, Montreal, Quebec H3T 1J4, Canada.

School of Physical and Occupational Therapy, McGill University, 3654 Promenade Sir-William-Osler, Montreal, Quebec H3G 1Y5, Canada.

出版信息

Clin Neurophysiol. 2021 Nov;132(11):2870-2889. doi: 10.1016/j.clinph.2021.08.016. Epub 2021 Sep 27.

Abstract

Unperturbed human locomotion presumably results from feedforward shifts in stable body equilibrium in the environment, thus avoiding falling and subsequent catching considered in alternative theories of locomotion. Such shifts are achieved by relocation of the referent body configuration at which multiple muscle recruitment begins. Rather than being directly specified by a central pattern generator, multiple muscles are activated depending on the extent to which the body is deflected from the referent, threshold body configuration, as confirmed in previous studies. Based on the referent control theory of action and perception, solutions to classical problems in motor control are offered, including the previously unresolved problem of the integration of central and reflex influences on motoneurons and the problem of how posture and movement are related. The speed of locomotion depends on the rate of shifts in the referent body configuration. The transition from walking to running results from increasing the rate of referent shifts. It is emphasised that there is a certain hierarchy between reciprocal and co-activation of agonist and antagonist muscles during locomotion and other motor actions, which is also essential for the understanding of how locomotor speed is regulated. The analysis opens a new avenue in neurophysiological approaches to human locomotion with clinical implications.

摘要

未受干扰的人类运动可能是由于在环境中稳定的身体平衡的前馈转移,从而避免了在替代运动理论中考虑的跌倒和随后的捕捉。这种转移是通过重新定位参考身体配置来实现的,在该配置中开始多个肌肉募集。正如先前的研究所证实的那样,多个肌肉的激活不是由中枢模式发生器直接指定的,而是取决于身体从参考、阈值身体配置的偏离程度。基于动作和感知的参考控制理论,为运动控制中的经典问题提供了解决方案,包括以前未解决的中央和反射对运动神经元影响的整合问题以及姿势和运动如何相关的问题。运动速度取决于参考身体配置的变化率。从行走到跑步的转变是通过增加参考点变化率来实现的。需要强调的是,在行走和其他运动动作中,拮抗剂和拮抗剂肌肉的相互激活和共同激活之间存在一定的层次结构,这对于理解如何调节运动速度也很重要。该分析为具有临床意义的人类运动的神经生理学方法开辟了新途径。

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