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中枢神经系统中单胺能终末的光镜和电镜鉴定

Light and electron microscopic identification of monoaminergic terminals in the central nervous system.

作者信息

Záborszky L, Léránth C, Palkovits M

出版信息

Brain Res Bull. 1979 Jan-Feb;4(1):99-117. doi: 10.1016/0361-9230(79)90064-9.

Abstract

A brief critical survey of methods used for light and electron microscopic examination of amine-containing pathways within the CNS. Light microscopic techniques such as fluorescence histochemistry, immunocytochemistry, autoradiography, silver degeneration techniques, and retrograde tracing technique are suitable for studying the topography of pathways but, due to limits of resolution, they are inadequate for identifying terminals. Electron microscopy which is adequate to visualize terminals does not provide an overall view. This review considers various methods which have been devised to specifically detect aminergic nerve terminals. Electrolytic and chemical induced degenerations are described in noradrenergic, dopaminergic, and serotoninergic terminals. Although the individual degenerative alterations are not specific for aminergic terminals, the degenerative process when considered as a whole can be informative. At present no single technique can provide complete information about the origin, course, connections, and terminals of aminergic systems. Concurrent application of light and electron microscopy, experimental surgery, histochemistry, and microsample biochemistry would provide a complete description.

摘要

对中枢神经系统内含胺通路进行光学显微镜和电子显微镜检查所用方法的简要批判性综述。诸如荧光组织化学、免疫细胞化学、放射自显影、银染色退变技术和逆行追踪技术等光学显微镜技术适用于研究通路的拓扑结构,但由于分辨率的限制,它们不足以识别终末。足以观察终末的电子显微镜无法提供整体视图。本综述考虑了为特异性检测胺能神经终末而设计的各种方法。描述了去甲肾上腺素能、多巴胺能和5-羟色胺能终末的电解和化学诱导退变。虽然单个退变改变并非胺能终末所特有,但将退变过程作为一个整体考虑时可能会提供有用信息。目前尚无单一技术能够提供有关胺能系统的起源、行程、连接和终末的完整信息。光学显微镜和电子显微镜、实验手术、组织化学和微量样品生物化学的联合应用将提供完整的描述。

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