首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Contribution of excitatory chloride conductance in the determination of the direction of traveling waves in an olfactory center.
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Contribution of excitatory chloride conductance in the determination of the direction of traveling waves in an olfactory center.

机译:兴奋性氯化物电导对确定嗅觉中心行波方向的贡献。

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摘要

Traveling waves have been found in the CNS of vertebrates and invertebrates. In the olfactory center [procerebrum (PC)] of the terrestrial slug Limax, periodic waves travel from the apex to the base with a frequency of approximately 0.7 Hz. The oscillation and propagation of waves have been thought to be mediated by the mutual connections of bursting neurons in the PC. The direction of the wave is Cl(-) dependent, because lowering the Cl(-) concentration in the medium reverses the direction. The bursting neurons have a Cl(-) channel-coupled glutamate receptor (GluClR), and, using a calcium imaging technique, the receptor was found to be excitatory. Activation of the GluClR with its selective agonist ibotenate resulted in an increased frequency of the oscillatory neural activity recorded as a periodic local field potential. Depletion of cytoplasmic Cl(-) with Cl(-)-free saline abolished all of the ibotenate-induced effects. Perforated-patch-clamp recording in single PC neurons revealed a spatial difference in the Cl(-)-dependent periodic depolarizations in the bursting neurons, with a higher amplitude in the apical region. These results suggest the involvement of excitatory GluClRs in the unidirectional propagation of waves in the PC.
机译:在脊椎动物和无脊椎动物的中枢神经系统中发现了行波。在陆地Limax的嗅觉中心[procerebrum(PC)]中,周期波以大约0.7 Hz的频率从顶点传播到基部。波的振荡和传播被认为是由PC中爆发性神经元的相互连接介导的。波的方向取决于Cl(-),因为降低介质中的Cl(-)浓度会使方向反向。爆发的神经元具有一个与Cl(-)通道耦合的谷氨酸受体(GluClR),并且使用钙成像技术发现该受体具有兴奋性。用其选择性激动剂ibotenate活化GluClR导致记录为周期性局部场电位的振荡神经活动的频率增加。不含Cl(-)的盐水耗尽细胞质Cl(-)消除了所有由ibotenate诱导的作用。单个PC神经元中的穿孔膜片钳记录显示爆发性神经元中Cl(-)依赖的周期性去极化的空间差异,在心尖区域具有更高的幅度。这些结果表明,兴奋性GluClRs参与了PC中波的单向传播。

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