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池塘蜗牛产卵行为期间柱状运动神经元的环神经元控制

Ring neuron control of columellar motor neurons during egg-laying behavior in the pond snail.

作者信息

Jansen R F, ter Maat A

出版信息

J Neurobiol. 1985 Jan;16(1):1-14. doi: 10.1002/neu.480160102.

Abstract

Egg-laying in Lymnaea is characterized by the stereotyped egg-laying behavior (ELB), composed of foot contractions and shell movements. Egg-laying can be induced by a clean water stimulus, that triggers a discharge of the neuroendocrine caudo-dorsal cells (CDCs), which release the ovulation hormone into the blood. A part of the behavior is lost when egg-laying is triggered by hormone injection, indicating that during natural stimulus-induced or spontaneous egg-laying this part (the first phase) may be controlled by neuronal events in the CNS triggered by (a) factor(s) not released to the blood. The authors have identified an unpaired neuron, the ring neuron, that is excited during an in vitro afterdischarge of the CDCs, and which, by its numerous axonal branches in the pedal ganglia, modulates motorneurons of the columellar muscle, which controls shell movements. These motor-neurons, identified as such in reduced preparations by 1 for 1 muscle potentials and elements in the connecting nerve, all receive either excitatory or inhibitory input from the ring neuron, as well as from an unknown neuron which has common input of the ring neuron and the motorneurons. The action of the CDCs on the ring neuron cannot be mimicked by the ovulation hormone, and we therefore conclude that the first part of the ELB is probably caused by a nonhormonal local action of the CDCs on the ring neuron and possibly the common input neuron.

摘要

椎实螺的产卵行为具有刻板的产卵行为(ELB)特征,由足部收缩和贝壳运动组成。清洁水刺激可诱导产卵,该刺激触发神经内分泌尾背细胞(CDC)的放电,这些细胞将排卵激素释放到血液中。当通过注射激素触发产卵时,部分行为会丧失,这表明在自然刺激诱导或自发产卵期间,这部分行为(第一阶段)可能受中枢神经系统中由未释放到血液中的一种或多种因子触发的神经元事件控制。作者鉴定出一个不成对的神经元,即环神经元,它在体外CDC放电后被激活,并且通过其在足神经节中的众多轴突分支,调节控制贝壳运动的柱状肌运动神经元。这些运动神经元在简化标本中通过一对一的肌肉电位和连接神经中的元件被识别出来,它们都接收来自环神经元以及来自一个未知神经元的兴奋性或抑制性输入,该未知神经元具有环神经元和运动神经元的共同输入。CDC对环神经元的作用不能被排卵激素模拟,因此我们得出结论,ELB的第一部分可能是由CDC对环神经元以及可能对共同输入神经元的非激素局部作用引起的。

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