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周围神经系统的组织:自主神经节和感觉神经节。

Organization of the peripheral nervous system: autonomic and sensory ganglia.

作者信息

Sternini C

机构信息

CURE Digestive Diseases Research Center, Department of Medicine, West-Los Angeles VA Medical Center, CA 90073, USA.

出版信息

J Investig Dermatol Symp Proc. 1997 Aug;2(1):1-7. doi: 10.1038/jidsymp.1997.2.

Abstract

Major advances have been made in our understanding of autonomic and sensory transmission and function during the past two decades. These include (i) the establishment of the role of sympathetic and parasympathetic ganglia in relaying neuronal information from the central nervous system to effector organs, (ii) the recognition that enteric ganglia, the third component of the autonomic nervous system, contain independent integrative circuits that control complex local activities, (iii) the evidence for local effector functions of primary sensory nerves in addition to their role in sensory transmission, and (iv) the discovery of plasticity of both autonomic and sensory neurons during disease states and inflammation. A major contribution to these new concepts has been the recognition that in both autonomic and sensory ganglia a variety of transmitters coexist in single neurons. Co-transmission is a widespread phenomenon that enables autonomic and sensory neurons to exert fine and highly regulated control of various functions such as circulation, respiration, digestion, and immune response. This chapter will focus on the general principles and specific features of autonomic and sensory ganglia, with a particular emphasis on their general organization and neurochemical properties. Classical concepts and modern principles of classification of autonomic and sensory ganglia are discussed.

摘要

在过去二十年里,我们对自主神经和感觉神经传递及功能的理解取得了重大进展。这些进展包括:(i)明确了交感神经节和副交感神经节在将神经元信息从中枢神经系统传递至效应器官过程中的作用;(ii)认识到肠神经节作为自主神经系统的第三个组成部分,包含控制复杂局部活动的独立整合回路;(iii)有证据表明初级感觉神经除了在感觉传递中发挥作用外,还具有局部效应功能;(iv)发现了疾病状态和炎症期间自主神经和感觉神经元的可塑性。对这些新概念的一个主要贡献是认识到在自主神经节和感觉神经节中,多种递质共存于单个神经元中。共同传递是一种广泛存在的现象,它使自主神经和感觉神经元能够对诸如循环、呼吸、消化和免疫反应等各种功能进行精细且高度调节的控制。本章将重点讨论自主神经节和感觉神经节的一般原则和具体特征,特别强调它们的总体组织结构和神经化学特性。还将讨论自主神经节和感觉神经节分类的经典概念和现代原则。

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