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连接大脑皮层与基底神经节的神经回路的功能组织:对基底神经节在癫痫中作用的启示

Functional organization of the circuits connecting the cerebral cortex and the basal ganglia: implications for the role of the basal ganglia in epilepsy.

作者信息

Slaght Seàn Joseph, Paz Tamar, Mahon Séverine, Maurice Nicolas, Charpier Stéphane, Deniau Jean-Michel

机构信息

School of Biosciences, Cardiff University, Cardiff, Wales, United Kingdom.

出版信息

Epileptic Disord. 2002 Dec;4 Suppl 3:S9-22.

Abstract

The basal ganglia are composed of a set of forebrain structures implicated in the adaptive control of behaviour. These structures process information originating from the entire cerebral cortex, as well as from nonspecific thalamic nuclei and the amygdala. In turn, they redistribute the integrated signals toward thalamic and brainstem nuclei related to motor, premotor, prefrontal and limbic cortical areas. During the two last decades, there has been increasing experimental evidence that the basal ganglia circuitry may be part of a remote control system influencing the spread of epileptic seizures. In the present article, we review the basic principles of the functional organization of the basal ganglia and provide experimental data on the activity that is transmitted by the cerebral cortex to the input stage of the basal ganglia during absence seizures. The functional organization of the basal ganglia supports the current hypothesis that these structures can dynamically control generalized seizures through their input-output relationships.

摘要

基底神经节由一组与行为的适应性控制有关的前脑结构组成。这些结构处理源自整个大脑皮层以及非特异性丘脑核和杏仁核的信息。反过来,它们将整合后的信号重新分配到与运动、运动前区、前额叶和边缘皮质区域相关的丘脑和脑干核。在过去二十年中,越来越多的实验证据表明,基底神经节回路可能是影响癫痫发作传播的远程控制系统的一部分。在本文中,我们回顾了基底神经节功能组织的基本原理,并提供了关于失神发作期间大脑皮层传递到基底神经节输入阶段的活动的实验数据。基底神经节的功能组织支持了当前的假说,即这些结构可以通过其输入-输出关系动态控制全身性癫痫发作。

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