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药用水蛭游泳的神经元控制。V. 振荡性中间神经元与运动神经元之间的联系。

Neuronal control of swimming in the medicinal leech. V. Connexions between the oscillatory interneurones and the motor neurones.

作者信息

Poon M, Friesen W O, Stent G S

出版信息

J Exp Biol. 1978 Aug;75:45-63. doi: 10.1242/jeb.75.1.45.

Abstract

A network of intra- and intersegmental synaptic connexions has been identified in the ventral nerve cord of the leech that links the set of oscillatory interneurones of the central swim oscillator to the motor neurones commanding the swimming rhythm. Excitatory connexions lead from oscillatory interneurones to both excitatory and inhibitory motor neurones, whereas inhibitory connexions lead from oscillatory interneurones to only the inhibitory motor neurones. Connexions leading from a motor neurone back to the oscillatory interneurones were found in only one exceptional case, an inhibitory motor neurone previously known to have access to the central swim oscillator. This network of identified connexions can account reasonably well for the mechanism by which the oscillatory interneurones drive their follower motor neurones into the phasic activity pattern characteristic of the swimming movement.

摘要

在水蛭的腹神经索中已识别出一个节内和节间突触连接网络,该网络将中央游泳振荡器的振荡中间神经元与控制游泳节律的运动神经元相连。兴奋性连接从振荡中间神经元通向兴奋性和抑制性运动神经元,而抑制性连接仅从振荡中间神经元通向抑制性运动神经元。从运动神经元返回振荡中间神经元的连接仅在一个特殊情况下被发现,即一个先前已知可接入中央游泳振荡器的抑制性运动神经元。这个已识别连接的网络能够较好地解释振荡中间神经元驱动其跟随的运动神经元进入游泳运动特征性相位活动模式的机制。

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