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随着伸展方向和速度对相位性和紧张性肌肉协同作用的调节。

Modulation of phasic and tonic muscle synergies with reaching direction and speed.

作者信息

d'Avella Andrea, Fernandez Laure, Portone Alessandro, Lacquaniti Francesco

机构信息

Department of Neuromotor Physiology, Santa Lucia Foundation, University of Rome Tor Vergata, Rome, Italy.

出版信息

J Neurophysiol. 2008 Sep;100(3):1433-54. doi: 10.1152/jn.01377.2007. Epub 2008 Jul 2.

Abstract

How the CNS masters the many degrees of freedom of the musculoskeletal system to control goal-directed movements is a long-standing question. We have recently provided support to the hypothesis that the CNS relies on a modular control architecture by showing that the phasic muscle patterns for fast reaching movements in different directions are generated by combinations of a few time-varying muscle synergies: coordinated recruitment of groups of muscles with specific activation profiles. However, natural reaching movements occur at different speeds and require the control of both movement and posture. Thus we have investigated whether muscle synergies also underlie reaching at different speeds as well as the maintenance of stable arm postures. Hand kinematics and shoulder and elbow muscle surface EMGs were recorded in five subjects during reaches to eight targets in the frontal plane at different speeds. We found that the amplitude modulation of three time-invariant synergies captured the variations in the postural muscle patterns at the end of the movement. During movement, three phasic and three tonic time-varying synergies could reconstruct the time-normalized muscle pattern in all conditions. Phasic synergies were modulated in both amplitude and timing by direction and speed. Tonic synergies were modulated only in amplitude by direction. The directional tuning of both types of synergies was well described by a single or a double cosine function. These results suggest that muscle synergies are basic control modules that allow generating the appropriate muscle patterns through simple modulation and combination rules.

摘要

中枢神经系统(CNS)如何掌控肌肉骨骼系统的众多自由度以控制目标导向运动,这是一个长期存在的问题。我们最近为“中枢神经系统依赖模块化控制架构”这一假说提供了支持,通过表明不同方向快速伸手动作的相位肌肉模式是由少数随时间变化的肌肉协同作用组合产生的:具有特定激活模式的肌肉群的协同募集。然而,自然的伸手动作以不同速度发生,并且需要对运动和姿势进行控制。因此,我们研究了肌肉协同作用是否也是不同速度下伸手以及稳定手臂姿势维持的基础。在五名受试者以不同速度在额平面伸手至八个目标的过程中,记录了手部运动学以及肩部和肘部肌肉表面肌电图。我们发现,三种时不变协同作用的幅度调制捕捉到了运动结束时姿势肌肉模式的变化。在运动过程中,三种相位和三种紧张性随时间变化的协同作用能够在所有条件下重建时间归一化的肌肉模式。相位协同作用在幅度和时间上均受方向和速度调制。紧张性协同作用仅在幅度上受方向调制。两种类型协同作用的方向调谐都可以用单余弦函数或双余弦函数很好地描述。这些结果表明,肌肉协同作用是基本的控制模块,能够通过简单的调制和组合规则产生适当的肌肉模式。

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