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节律性和节律失调性丘脑皮质动力学:GABA 系统与边缘效应

Rhythmic and dysrhythmic thalamocortical dynamics: GABA systems and the edge effect.

作者信息

Llinás Rodolfo, Urbano Francisco J, Leznik Elena, Ramírez Rey R, van Marle Hein J F

机构信息

Department of Physiology and Neuroscience, New York University School of Medicine, 550 First Avenue, New York, NY 10016, USA.

出版信息

Trends Neurosci. 2005 Jun;28(6):325-33. doi: 10.1016/j.tins.2005.04.006.

Abstract

Brain function is fundamentally related in the most general sense to the richness of thalamocortical interconnectivity, and in particular to the rhythmic oscillatory properties of thalamocortical loops. Such rhythmicity is involved in the genesis of cognition, in the sleep-wake cycle, and in several neurological and psychiatric disorders. The role of GABA-mediated transmission in regulating these functional states is addressed here. At the cortical level, inhibition determines the spread of cortical activation by sculpting the precise activity patterns that underlie the details of cognition and motor control. At the thalamic level, GABA-mediated inhibition modulates and resets distribution of the ongoing thalamocortical rhythmic oscillations that bind multisensory inputs into a single cognitive experience and regulate arousal levels.

摘要

从最普遍的意义上讲,脑功能与丘脑皮质相互连接的丰富程度密切相关,尤其与丘脑皮质环路的节律性振荡特性相关。这种节律性参与了认知的产生、睡眠 - 觉醒周期以及多种神经和精神疾病。本文探讨了γ-氨基丁酸(GABA)介导的神经传递在调节这些功能状态中的作用。在皮质层面,抑制作用通过塑造构成认知和运动控制细节基础的精确活动模式来决定皮质激活的传播。在丘脑层面,GABA介导的抑制作用调节并重置正在进行的丘脑皮质节律性振荡的分布,这种振荡将多感官输入整合为单一的认知体验并调节觉醒水平。

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