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猴子进行简单手臂运动时肌肉和运动皮层的活动模式。

Patterns of muscular and motor cortical activity during a simple arm movement in the monkey.

作者信息

Lamarre Y, Spidalieri G, Lund J P

出版信息

Can J Physiol Pharmacol. 1981 Jul;59(7):748-56. doi: 10.1139/y81-111.

Abstract

This article describes the behavior of motor cortex neurons recorded in macaque monkeys (Macaca mulatta) which had been trained to make extension and flexion movements about the elbow in response to auditory, visual, or somesthetic cues. The pattern of activity of 65% of those movement-related neurons which were recorded during both flexion and extension was reciprocally related to the direction of movement. However, the movements of extension and flexion were made by co-contraction of the biceps and triceps in a pattern that did not match that of the motor cortex neurons. The majority of motor cortex neurons had firing frequencies that were related to movement parameters but by their nature could not be directly involved in the control of alpha motoneurons in both directions of movement. We suggest that they could, instead, control the fusimotor system. It is more likely that alpha motoneurons are controlled by the 35% of motor cortex neurons that, like the muscles, do not show reciprocal patterns of activity for movements in opposite directions.

摘要

本文描述了在恒河猴(猕猴)身上记录到的运动皮层神经元的行为,这些猴子经过训练,能根据听觉、视觉或本体感觉线索做出肘部屈伸运动。在屈伸运动中均被记录到的与运动相关的神经元中,65%的神经元活动模式与运动方向呈反向相关。然而,屈伸运动是由肱二头肌和肱三头肌共同收缩完成的,其模式与运动皮层神经元的模式不匹配。大多数运动皮层神经元的放电频率与运动参数有关,但就其性质而言,无法直接参与双向运动中α运动神经元的控制。我们认为,它们反而可以控制肌梭运动系统。更有可能的是,α运动神经元是由35%的运动皮层神经元控制的,这些神经元与肌肉一样,在相反方向的运动中不表现出反向活动模式。

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