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大脑皮质中缝隙连接网络的结构组织

Structural organization of the gap junction network in the cerebral cortex.

作者信息

Fukuda Takaichi

机构信息

Department of Anatomy and Neurobiology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

出版信息

Neuroscientist. 2007 Jun;13(3):199-207. doi: 10.1177/1073858406296760.

Abstract

Neurons in mammalian brains are heavily interconnected by specialized junctions called chemical synapses. At chemical synapses, signals are transmitted rather indirectly between connected neurons with some delay. Recent studies have revealed additional channels for neuronal communication, that is, gap junctions. As electrical signals are directly transmitted through gap junctions without delay, gap junctions can mediate synchronous activities of coupled neurons. In the cerebral cortex, both morphological and physiological studies have established frequent occurrence of gap junctions between dendrites of GABAergic interneurons of particular types. However, it remains unclear how the dendritic network of these interneurons is extended three-dimensionally within the tissue architecture. The present article reviews recent findings on structural aspects of the gap junction network in the cerebral cortex. The three-dimensional structure of the network is discussed on a basis of contrasting tissue organization in the two cortical areas, the hippocampus and neocortex. The controversial issue on the presence and function of distal gap junctions is addressed. Quantitative analysis of the distribution of gap junctions along dendritic profiles suggests lateral continuity of the network that extends in a boundless manner. Functional implications of this lateral continuity are discussed with particular reference to variability in local cell assemblies.

摘要

哺乳动物大脑中的神经元通过称为化学突触的特殊连接紧密相连。在化学突触处,信号在相连的神经元之间相当间接地传递,且存在一定延迟。最近的研究揭示了神经元通讯的其他通道,即缝隙连接。由于电信号可直接通过缝隙连接无延迟地传递,缝隙连接能够介导耦合神经元的同步活动。在大脑皮层,形态学和生理学研究均证实,特定类型的GABA能中间神经元的树突之间频繁存在缝隙连接。然而,这些中间神经元的树突网络如何在组织结构内三维扩展仍不清楚。本文综述了大脑皮层缝隙连接网络结构方面的最新研究发现。基于海马体和新皮层这两个皮质区域不同的组织架构,对该网络的三维结构进行了讨论。文中还探讨了关于远端缝隙连接的存在及其功能这一有争议的问题。沿树突轮廓对缝隙连接分布的定量分析表明,该网络具有侧向连续性,且以无界的方式延伸。本文特别参考局部细胞集合的变异性,讨论了这种侧向连续性的功能意义。

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