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全身退缩回路及其在海天使(Clione limacina)行为等级体系中的作用。

Whole body withdrawal circuit and its involvement in the behavioral hierarchy of the mollusk Clione limacina.

作者信息

Norekian T P, Satterlie R A

机构信息

Department of Zoology, Arizona State University, Tempe 85287-1501, USA.

出版信息

J Neurophysiol. 1996 Feb;75(2):529-37. doi: 10.1152/jn.1996.75.2.529.

Abstract
  1. The behavioral repertoire of the holoplanktonic pteropod mollusk Clione limacina includes a few well-defined behaviors organized in a priority sequence. Whole body withdrawal takes precedence over slow swimming behavior, whereas feeding behavior is dominant over withdrawal. In this study a group of neurons is described in the pleural ganglia, which controls whole body withdrawal behavior in Clione. Each pleural withdrawal (Pl-W) neuron has a high threshold for spike generation and is capable of inducing whole body withdrawal in a semi-intact preparation: retraction of the body-tail, wings, and head. Each Pl-W neuron projects axons into the main central nerves and innervates all major regions of the body. 2. Stimulation of Pl-W neurons produces inhibitory inputs to swim motor neurons that terminate swimming activity in the preparation. In turn, Pl-W neurons receive inhibitory inputs from the cerebral neurons involved in the control of feeding behavior in Clione, neurons underlying extrusion of specialized prey capture appendages. Thus it appears that specific inhibitory connections between motor centers can explain the dominance of withdrawal behavior over slow swimming and feeding over withdrawal in Clione.
摘要
  1. 全浮游翼足类软体动物海若螺的行为模式包括一些按优先顺序组织的明确行为。全身退缩优先于缓慢游泳行为,而摄食行为则优先于退缩行为。在本研究中,描述了一组位于胸膜神经节中的神经元,它们控制海若螺的全身退缩行为。每个胸膜退缩(Pl-W)神经元产生动作电位的阈值较高,并且能够在半完整标本中诱发全身退缩:身体尾部、翅膀和头部的收缩。每个Pl-W神经元将轴突投射到主要的中枢神经中,并支配身体的所有主要区域。2. 刺激Pl-W神经元会向游泳运动神经元产生抑制性输入,从而终止标本中的游泳活动。反过来,Pl-W神经元从参与控制海若螺摄食行为的脑神经元接收抑制性输入,这些脑神经元是专门的猎物捕获附属物伸出的基础。因此,运动中枢之间特定的抑制性连接似乎可以解释海若螺中退缩行为优先于缓慢游泳行为以及摄食行为优先于退缩行为的现象。

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