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美洲螯龙虾口胃神经系统中的节律性调制门控系统。II. 幽门中央模式发生器的调制控制

A rhythmic modulatory gating system in the stomatogastric nervous system of Homarus gammarus. II. Modulatory control of the pyloric CPG.

作者信息

Nagy F, Cardi P

机构信息

Université de Bordeaux I, Centre National de la Recherche Scientifique, Laboratoire de Neurobiologie et Physiologie Comparées Arcachon, France.

出版信息

J Neurophysiol. 1994 Jun;71(6):2490-502. doi: 10.1152/jn.1994.71.6.2490.

DOI:10.1152/jn.1994.71.6.2490
PMID:7931530
Abstract
  1. In the European rock lobster, Homarus gammarus, two bilaterally symmetrical pairs of commissural neurons, P and commissural pyloric (CP), evoke excitatory postsynaptic potentials in the neurons of the pyloric motor network. The present paper shows that the two commissural neurons also exert a modulatory control over the pyloric network. 2. The P and CP neurons were active during ongoing pyloric rhythms. Ongoing pyloric activity was terminated when the neurons were hyperpolarized to inhibit their firing. 3. When the pyloric network was quiescent, depolarizing either the P or CP neuron induced a robust pyloric rhythm. 4. We studied the actions of the P and CP neurons on individual pyloric neurons isolated in situ from network interactions by a photoinactivation techniques. The P neuron induced oscillatory properties in the pacemaker pyloric dilator (PD) neurons and the motor neuron, ventricular dilator (VD), whereas the CP neuron induced rhythmogenic properties in all the network neurons but VD. Together, the P-CP neurons modulated the entire pyloric network. The modulatory effects of the P-CP neurons did not outlast the duration of their discharge. 5. The P and CP neurons also controlled the firing frequency of all the pyloric neurons. They may, in addition, control phasing of the constrictor neurons discharges, but this effect was state-dependent and occurred only when the pyloric central pattern generator was functioning weakly. Their role in providing flexibility to the network operation appeared relatively limited. 6. We conclude that the P and CP neurons are good candidates for insuring long-term maintenance of pyloric network activity patterns.
摘要
  1. 在欧洲岩龙虾(Homarus gammarus)中,两对双侧对称的连合神经元,即P神经元和连合幽门神经元(CP),可在幽门运动网络的神经元中诱发兴奋性突触后电位。本文表明,这两个连合神经元还对幽门网络发挥调节控制作用。2. 在持续的幽门节律期间,P和CP神经元处于活跃状态。当这些神经元被超极化以抑制其放电时,持续的幽门活动就会终止。3. 当幽门网络处于静止状态时,对P或CP神经元进行去极化会诱发强烈的幽门节律。4. 我们通过光灭活技术研究了P和CP神经元对在原位从网络相互作用中分离出来的单个幽门神经元的作用。P神经元在起搏性幽门扩张神经元(PD)和运动神经元心室扩张神经元(VD)中诱导出振荡特性,而CP神经元在除VD之外的所有网络神经元中诱导出节律生成特性。总之,P-CP神经元调节了整个幽门网络。P-CP神经元的调节作用不会超过其放电持续时间。5. P和CP神经元还控制了所有幽门神经元的放电频率。此外,它们可能还控制收缩神经元放电的相位,但这种效应取决于状态,并且仅在幽门中央模式发生器功能较弱时才会出现。它们在为网络运作提供灵活性方面的作用似乎相对有限。6. 我们得出结论,P和CP神经元是确保幽门网络活动模式长期维持的良好候选者。

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