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γ-氨基丁酸能神经传递与视网膜神经节细胞功能。

GABAergic neurotransmission and retinal ganglion cell function.

作者信息

Popova E

机构信息

Department of Physiology, Medical Faculty, Medical University, 1431, Sofia, Bulgaria,

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2015 Mar;201(3):261-83. doi: 10.1007/s00359-015-0981-z. Epub 2015 Feb 6.

Abstract

Ganglion cells are the output retinal neurons that convey visual information to the brain. There are ~20 different types of ganglion cells, each encoding a specific aspect of the visual scene as spatial and temporal contrast, orientation, direction of movement, presence of looming stimuli; etc. Ganglion cell functioning depends on the intrinsic properties of ganglion cell's membrane as well as on the excitatory and inhibitory inputs that these cells receive from other retinal neurons. GABA is one of the most abundant inhibitory neurotransmitters in the retina. How it modulates the activity of different types of ganglion cells and what is its significance in extracting the basic features from visual scene are questions with fundamental importance in visual neuroscience. The present review summarizes current data concerning the types of membrane receptors that mediate GABA action in proximal retina; the effects of GABA and its antagonists on the ganglion cell light-evoked postsynaptic potentials and spike discharges; the action of GABAergic agents on centre-surround organization of the receptive fields and feature related ganglion cell activity. Special emphasis is put on the GABA action regarding the ON-OFF and sustained-transient ganglion cell dichotomy in both nonmammalian and mammalian retina.

摘要

神经节细胞是视网膜的输出神经元,负责将视觉信息传递至大脑。神经节细胞约有20种不同类型,每种类型编码视觉场景的一个特定方面,如空间和时间对比度、方向、运动方向、逼近刺激的存在等。神经节细胞的功能取决于神经节细胞膜的内在特性,以及这些细胞从其他视网膜神经元接收的兴奋性和抑制性输入。γ-氨基丁酸(GABA)是视网膜中最丰富的抑制性神经递质之一。它如何调节不同类型神经节细胞的活动,以及它在从视觉场景中提取基本特征方面有何意义,是视觉神经科学中具有根本重要性的问题。本综述总结了当前有关介导GABA在视网膜近端作用的膜受体类型的数据;GABA及其拮抗剂对神经节细胞光诱发的突触后电位和动作电位发放的影响;GABA能药物对感受野中心-周边组织和与特征相关的神经节细胞活动的作用。特别强调了在非哺乳动物和哺乳动物视网膜中,GABA对开-关型和持续-瞬变型神经节细胞二分法的作用。

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