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金鱼中脑顶盖的功能解剖学。对顶盖层状结构组织功能意义的探索性分析。

Functional anatomy of the tectum mesencephali of the goldfish. An explorative analysis of the functional implications of the laminar structural organization of the tectum.

作者信息

Meek J

出版信息

Brain Res. 1983 Dec;287(3):247-97. doi: 10.1016/0165-0173(83)90008-5.

Abstract

The present paper is aimed at an exploration of the possible functional significance of the laminar organization of the goldfish tectum at both the cellular and the synaptic level. For this purpose (1) the data concerning the structure of the teleostean tectum are surveyed, (2) a conceptual framework of the intratectal connectivity in the goldfish is proposed, (3) the electrophysiological data concerning the teleosteam tectum are surveyed and (4) the degree of correlation between the structural and physiological data available is discussed. Apart from the retina, tectal afferents originate from at least 10 other brain centers. At least 5 of these projections appear to be topographically organized. Tectal afferents, neurons as well as synapses reveal a characteristic intratectal lamination pattern. Tectal efferents project to at least 10 brain centers, and have until now been shown to arise from 6 cell types. The structural data surveyed allow the construction of a conceptual framework of tectal circuitry on the basis of 3 starting points. (1) The existence of at least 8 presynaptic zones or laminae, each containing a characteristic set of presynaptic structures (afferents and axons of interneurons). (2) The fact that the tectal postsynaptic structures (somata and dendrites of tectal neurons) each have a characteristic location, extension and synaptic density, which determines the relative importance of the different presynaptic zones for each cell type. (3) The laminar specificity hypothesis, which implies that presynaptic structures that coexist in a particular presynaptic zone terminate without preference on all types of postsynaptic structures within that zone. The conceptual framework of tectal circuitry is quantified in terms of connectivity index and connective importance. Analysis of the framework constructed leads to a detailed description of the intratectal pathways involved in the processing of the 4 main streams of tectal input (i.e. visual, toral, telencephalic and 'deep' input). It was concluded that the laminar organization of the tectum is primarily relevant for multimodal integration and that the tectal cell types each receive a characteristic sample out of the multimodal information available in the different tectal layers.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

本文旨在从细胞和突触层面探究金鱼视顶盖分层组织可能具有的功能意义。为此,(1)调查了有关硬骨鱼视顶盖结构的数据;(2)提出了金鱼视顶盖内连接性的概念框架;(3)调查了有关硬骨鱼视顶盖的电生理数据;(4)讨论了现有结构和生理数据之间的相关程度。除视网膜外,视顶盖传入神经至少起源于其他10个脑中枢。其中至少5种投射似乎是按拓扑结构组织的。视顶盖传入神经、神经元以及突触均呈现出一种特有的视顶盖内分层模式。视顶盖传出神经投射至至少10个脑中枢,目前已证明其起源于6种细胞类型。所调查的结构数据允许基于3个出发点构建视顶盖神经回路的概念框架。(1)至少存在8个突触前区或层,每个区域包含一组特有的突触前结构(中间神经元的传入神经和轴突)。(2)视顶盖突触后结构(视顶盖神经元的胞体和树突)各自具有特有的位置、范围和突触密度这一事实,这决定了不同突触前区对每种细胞类型的相对重要性。(3)分层特异性假说,即共存于特定突触前区内的突触前结构无偏好地终止于该区域内所有类型的突触后结构上。视顶盖神经回路的概念框架通过连接指数和连接重要性进行量化。对所构建框架的分析得出对视顶盖内参与处理视顶盖4种主要输入流(即视觉、听觉、端脑和“深部”输入)的神经通路的详细描述。得出的结论是,视顶盖的分层组织主要与多模式整合相关,并且视顶盖细胞类型各自从不同视顶盖层中可用的多模式信息中接收一组特有的样本。(摘要截选至400词)

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