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[运动参数的中枢调节模型]

[A model of central regulation of movement parameters].

作者信息

Adamovich S V, Fel'dman A G

出版信息

Biofizika. 1984 Mar-Apr;29(2):306-9.

PMID:6722197
Abstract

The central processes responsible for a gradation of muscle torques or joint angles are suggested on the basis of the mass-spring hypothesis. Two fundamental commands (reciprocal and co- activative ) involved in the control over antagonist muscles are defined in terms of shifts of the so-called invariant characteristics (muscle torque vs joint angle). Each of the commands is graded by a neuronal ensemble arranged in line. Excitation propagates along the line at a centrally established rate. As the wave front moves, the output ensemble neurons are tonically recruited, and they discretely contribute to the respective command according to the superposition principle. The terminal position of the wave front of the reciprocal command is responsible for the final angular limb position, whereas the wave velocity--for the movement speed. The coactivation command just enhances muscle stiffness for a time of the movement. The theory presented is sufficiently well-defined to yield a variety of specific and testable predictions. After insignificant modifications the theory may be referred to the generation of the eye and head movements, both slow and fast ones.

摘要

基于质量-弹簧假说,提出了负责肌肉扭矩或关节角度分级的核心过程。根据所谓不变特征(肌肉扭矩与关节角度)的变化,定义了控制拮抗肌的两个基本指令(交互指令和共同激活指令)。每个指令都由排成一排的神经元集群进行分级。兴奋以中枢设定的速率沿线传播。随着波前移动,输出集群神经元被持续募集,并根据叠加原理离散地对各自的指令做出贡献。交互指令波前的终端位置决定了肢体的最终角度位置,而波速则决定了运动速度。共同激活指令只是在运动期间增强肌肉刚度。所提出的理论定义明确,足以产生各种具体且可测试的预测。经过微小修改后,该理论可用于解释眼球和头部运动的产生,包括慢速和快速运动。

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