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支持伸手动作的皮质机制。

Cortical mechanisms subserving reaching.

作者信息

Georgopoulos A P

机构信息

Philip Bard Laboratories of Neurophysiology, Department of Neuroscience, Johns Hopkins University, School of Medicine, Baltimore, Maryland 21205.

出版信息

Ciba Found Symp. 1987;132:125-41. doi: 10.1002/9780470513545.ch8.

Abstract

The generation and control of reaching in space is a function of several structures, cortical and subcortical. This paper summarizes some principles of the cortical mechanisms subserving this function, as revealed by recording the impulse activity of neurons in motor cortex and area 5 of the posterior parietal cortex in behaving monkeys. Large populations of neurons in these cortical areas are engaged in reaching. This engagement is early in time; for example, cell activity in the motor cortex begins to change 60-80 ms after target onset, and slightly later in area 5. The time course of cell recruitment in the active population is very similar for reaching movements of equal amplitude directed to different targets. In contrast, the intensity of cell discharge in both motor and parietal cortex is clearly modulated with respect to the direction of reaching. Typically, the firing rate is a cosine function of the direction of the movement in space. An unambiguous distributed code for the direction of reaching exists in neuronal populations in the cortical areas studied. The outcome of this population code can be visualized as a vector in neural space that points in the direction of the upcoming movement.

摘要

在空间中伸手动作的产生与控制是多种皮质和皮质下结构的功能。本文总结了实现该功能的皮质机制的一些原理,这些原理是通过记录行为猴子运动皮质和顶叶后皮质5区神经元的冲动活动而揭示的。这些皮质区域中的大量神经元参与伸手动作。这种参与在时间上较早;例如,运动皮质中的细胞活动在目标出现后60 - 80毫秒开始变化,在5区稍晚一些。对于指向不同目标的等幅伸手动作,活跃群体中细胞募集的时间进程非常相似。相比之下,运动皮质和顶叶皮质中细胞放电的强度明显随伸手方向而调制。通常,放电频率是空间中运动方向的余弦函数。在所研究的皮质区域的神经元群体中存在一种明确的伸手方向分布式编码。这种群体编码的结果可以在神经空间中可视化为一个指向即将到来运动方向的向量。

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