[中枢模式发生器:活动机制及其在“自动”运动控制中的作用]。

IF 0.2 4区 医学 Q4 NEUROSCIENCES
I Arshavsky, T G Deliagina, G N Orlovsky
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引用次数: 0

摘要

中枢模式发生器(cpg)是一组相互连接的神经元,能够在缺乏执行运动器官传入信号的情况下,产生“自动”运动(呼吸、运动、咀嚼、吞咽等)的基本运动输出模式。它们可分为终身活动的建构性cpg(呼吸性cpg)和控制幕式运动(运动、咀嚼、吞咽等)的条件性cpg。由于cpg的运动输出是由其内部组织决定的,因此条件cpg的活动是由来自较高中心的简单命令发起的。我们描述了海洋软体动物Clione limacina,七鳃鳗,青蛙胚胎和实验室哺乳动物(猫,小鼠和大鼠)的运动CPGs的结构和功能组织,CPGs控制哺乳动物的呼吸和吞咽运动,CPGs控制裸子形鱼类的电器官放电。研究表明,在所有这些情况下,节律性运动输出的产生都是基于特定中间神经元群的内源性(起搏器)活动和神经间的相互作用。这两种相互关联的机制相辅相成,确保了CPG功能的高可靠性。我们讨论了如何利用研究CPGs获得的经验来理解更复杂的大脑功能机制,包括其认知功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Central Pattern Generators: Mechanisms of the Activity and Their Role in the Control of "Automatic" Movements].

Central pattern generators (CPGs) are a set of interconnected neurons capable of generating a basic pattern of motor output underlying "automatic" movements (breathing, locomotion, chewing, swallowing, and so on) in the absence of afferent signals from the executive motor apparatus. They can be divided into the constitutive CPGs active throughout the entire lifetime (respiratory CPGs) and conditional CPGs controlling episodic movements (locomotion, chewing, swallowing, and others). Since a motor output of CPGs is determined by their internal organization, the activities of the conditional CPGs are initiated by simple commands coming from higher centers. We describe the structural and functional organization of the locomotor CPGs in the marine mollusk Clione limacina, lamprey, frog embryo, and laboratory mammals (cat, mouse, and rat), CPGs controlling the respiratory and swallowing movements in mammals, and CPGs controlling discharges of the electric organ in the gymnotiform fish. It is shown that in all these cases, the generation of rhythmic motor output is based both on the endogenous (pacemaker) activity of specific groups of interneurons and on interneural interactions. These two interrelated mechanisms complement each other, ensuring the high reliability of CPG functionality. We discuss how the experience obtained in studying CPGs can be used to understand mechanisms of more complex functions of the brain, including its cognitive functions.

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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
9
审稿时长
6-12 weeks
期刊介绍: Information not localized
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