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哺乳动物神经元的内在电生理特性:对中枢神经系统功能的见解。

The intrinsic electrophysiological properties of mammalian neurons: insights into central nervous system function.

作者信息

Llinás R R

机构信息

Department of Physiology and Biophysics, New York University Medical Center, New York 10016.

出版信息

Science. 1988 Dec 23;242(4886):1654-64. doi: 10.1126/science.3059497.

Abstract

This article reviews the electroresponsive properties of single neurons in the mammalian central nervous system (CNS). In some of these cells the ionic conductances responsible for their excitability also endow them with autorhythmic electrical oscillatory properties. Chemical or electrical synaptic contacts between these neurons often result in network oscillations. In such networks, autorhythmic neurons may act as true oscillators (as pacemakers) or as resonators (responding preferentially to certain firing frequencies). Oscillations and resonance in the CNS are proposed to have diverse functional roles, such as (i) determining global functional states (for example, sleep-wakefulness or attention), (ii) timing in motor coordination, and (iii) specifying connectivity during development. Also, oscillation, especially in the thalamo-cortical circuits, may be related to certain neurological and psychiatric disorders. This review proposes that the autorhythmic electrical properties of central neurons and their connectivity form the basis for an intrinsic functional coordinate system that provides internal context to sensory input.

摘要

本文综述了哺乳动物中枢神经系统(CNS)中单个神经元的电反应特性。在其中一些细胞中,负责其兴奋性的离子电导也赋予它们自动节律性电振荡特性。这些神经元之间的化学或电突触联系常常导致网络振荡。在这样的网络中,自动节律性神经元可能充当真正的振荡器(如起搏器)或谐振器(优先响应某些放电频率)。中枢神经系统中的振荡和共振被认为具有多种功能作用,例如(i)确定整体功能状态(如睡眠 - 觉醒或注意力),(ii)运动协调中的定时,以及(iii)发育过程中特定的连接性。此外,振荡,尤其是在丘脑 - 皮质回路中,可能与某些神经和精神疾病有关。本综述提出,中枢神经元的自动节律性电特性及其连接性构成了一个内在功能坐标系的基础,该坐标系为感觉输入提供依据。

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