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[基底神经节在运动控制中的作用]

[The role of the basal ganglia in movement control].

作者信息

Kaneoke Y, Vitek J L

机构信息

Department of Neurology, Emory University, USA.

出版信息

Rinsho Shinkeigaku. 1995 Dec;35(12):1518-21.

PMID:8752450
Abstract

It is now widely accepted that the basal ganglia (BG) are functionally organized with several segregated loops which start at a certain area in the cortex and project back to the same area in the cortex through the thalamus. The detailed functional organization of the BG motor loop has been described and used successfully to explain the mechanism of hypo- and hyper-kinetic disorders caused by BG disorders. Recent physiological and anatomical studies have provided new information concerning the function of these nuclei. The indirect pathway from the striatum to the external globus pallidus and then to the internal globus pallidus may be much more important than previous thought. The subthalamic nucleus may transmit excitatory input from the cortex as well as acting as a driving force on the globus pallidus. The role of BG output on the thalamus may not be to transfer information to the cortex via thalamocortical neurons, but rather to modulate the activity of cortico-thalamocortical loops. By varying it's discharge rate, the BG can change the membrane potentials of thalamocortical neurons which may result in focusing the activity of a specific cortico-thalamo-cortical loop and/or switching it to another.

摘要

现在人们普遍认为,基底神经节(BG)在功能上是由几个分离的环路组成的,这些环路从皮质的特定区域开始,通过丘脑投射回皮质的同一区域。BG运动环路的详细功能组织已被描述,并成功用于解释由BG疾病引起的运动减少和运动亢进障碍的机制。最近的生理学和解剖学研究提供了有关这些核团功能的新信息。从纹状体到外侧苍白球再到内侧苍白球的间接通路可能比以前认为的更为重要。底丘脑核可能传递来自皮质的兴奋性输入,并对苍白球起到驱动力的作用。BG对丘脑的输出作用可能不是通过丘脑皮质神经元将信息传递到皮质,而是调节皮质-丘脑-皮质环路的活动。通过改变其放电率,BG可以改变丘脑皮质神经元的膜电位,这可能导致特定皮质-丘脑-皮质环路的活动集中和/或将其切换到另一个环路。

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