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中枢模式发生器回路固有突触强度的动态神经调节。

Dynamic neuromodulation of synaptic strength intrinsic to a central pattern generator circuit.

作者信息

Katz P S, Getting P A, Frost W N

机构信息

Department of Neurobiology and Anatomy, University of Texas Medical School, Houston 77225.

出版信息

Nature. 1994 Feb 24;367(6465):729-31. doi: 10.1038/367729a0.

Abstract

Motor circuits are often thought to be physically separate from their neuromodulatory systems. We report here a counter example, where neurons within a circuit appear to modulate synaptic properties of that same circuit during its normal operation. The dorsal swim interneurons (DSIs) are members of the central pattern generator circuit for escape swimming in the mollusc Tritonia diomedea. However, DSI stimulation also rapidly enhances the synaptic potentials evoked by another neuron in the same circuit onto its follower cells. This modulatory action appears to be mediated by serotonin (5-hydroxytryptamine); the DSIs are serotonin-immunoreactive, and bath-application of serotonin mimics and occludes the effect of DSIs. These results indicate that during the escape swim, circuit connection strengths are dynamically controlled by the activity of neurons within the circuit itself. This 'intrinsic neuromodulation' may be important for the animal's initial decision to swim, the generation of the swim motor programme itself, and certain types of learning.

摘要

运动回路通常被认为在物理上与其神经调节系统是分开的。我们在此报告一个反例,即在一个回路中的神经元在其正常运作期间似乎会调节该回路自身的突触特性。背侧游泳中间神经元(DSIs)是软体动物多氏三歧海兔逃避游泳的中枢模式发生器回路的组成部分。然而,刺激DSIs也会迅速增强同一回路中另一个神经元在其跟随细胞上诱发的突触电位。这种调节作用似乎是由血清素(5-羟色胺)介导的;DSIs具有血清素免疫反应性,并且在浴槽中应用血清素可模拟并阻断DSIs的作用。这些结果表明,在逃避游泳过程中,回路连接强度由回路自身内神经元的活动动态控制。这种“内在神经调节”对于动物游泳的初始决策、游泳运动程序本身的产生以及某些类型的学习可能很重要。

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