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水蛭游泳起始中间神经元2051细胞的节段特化

Segmental specialization of a leech swim-initiating interneuron, cell 2051.

作者信息

Weeks J C

出版信息

J Neurosci. 1982 Jul;2(7):972-85. doi: 10.1523/JNEUROSCI.02-07-00972.1982.

Abstract

The physiological and anatomical properties of an unpaired intersegmental interneuron designated cell 205 are described. Cell 205 is unusual among leech neurons in that it combines a variety of functional properties in a single cell. Constant current depolarization of cell 205 initiates and maintains swimming behavior in semi-intact leeches or the swim motor pattern in brainless, isolated nerve cords. During swim episodes elicited by other stimuli, cell 205 is rhythmically active. Current pulses passed into cell 205 during swimming reset the pattern, indicting that it has access to, or may be a member of, the swim central pattern generator (CPG). Cell 205 is the first interneuron in this system to exhibit both swim-initiating and CPG functions. Individual touch, pressure, and nociceptive primary mechanoreceptor neurons polysynaptically excite cell 205, which, in addition, is coupled electrically to the multimodal S interneuron. These inputs may contribute to the initiation and/or modulation of swimming in response to sensory stimuli. Cell 205 shares some common synaptic inputs and outputs with the only other known swim-initiating interneuron, cell 204, but the two cells differ fundamentally in that cell 204 exerts only a tonic effect on the CPG. No synaptic interactions were found between cells 204 and 205, but their excitatory effects on swimming summate. Unlike other swim neurons which are segmentally repeated, cell 205 generally is present only in segment 9, and numerous lines of evidence suggest that it is, in fact, a segmentally differentiated homolog of cell 204.

摘要

本文描述了一种名为细胞205的不成对节间中间神经元的生理和解剖特性。细胞205在水蛭神经元中较为独特,因为它在单个细胞中兼具多种功能特性。对细胞205进行恒流去极化可引发并维持半完整水蛭的游泳行为,或无脑、孤立神经索中的游泳运动模式。在由其他刺激引发的游泳过程中,细胞205有节律地活动。在游泳期间向细胞205注入电流脉冲会重置模式,这表明它能够接入游泳中央模式发生器(CPG),或者可能是其成员之一。细胞205是该系统中首个兼具启动游泳和CPG功能的中间神经元。单个触觉、压力和伤害性初级机械感受器神经元通过多突触方式兴奋细胞205,此外,细胞205还与多模式S中间神经元电耦合。这些输入可能有助于响应感觉刺激而启动和/或调节游泳。细胞205与另一个已知的启动游泳的中间神经元细胞204共享一些常见的突触输入和输出,但这两个细胞的根本区别在于,细胞204仅对CPG产生强直作用。未发现细胞204和205之间存在突触相互作用,但它们对游泳的兴奋作用会叠加。与其他节段重复的游泳神经元不同,细胞205通常仅存在于第9节段,大量证据表明,它实际上是细胞204的节段分化同源物。

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