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嗅觉中间神经元的相干网络振荡:内源性胺类的调节作用

Coherent network oscillations by olfactory interneurons: modulation by endogenous amines.

作者信息

Gelperin A, Rhines L D, Flores J, Tank D W

机构信息

Biological Computation Research Department, AT&T Bell Laboratories, Murray Hill, New Jersey 07974.

出版信息

J Neurophysiol. 1993 Jun;69(6):1930-9. doi: 10.1152/jn.1993.69.6.1930.

Abstract
  1. The procerebral (PC) lobe of the terrestrial mollusk Limax maximus contains a highly interconnected network of local olfactory interneurons that receives direct axonal projections from the two pairs of noses. This olfactory processing network generates a 0.7-Hz oscillation in its local field potential (LFP) that is coherent throughout the network. The oscillating LFP is modulated by natural odorants applied to the neuroepithelium of the superior nose. 2. Two amines known to be present in the PC lobe, dopamine and serotonin, increase the frequency of the PC lobe oscillation and alter its waveform. 3. Glutamate, another putative neurotransmitter known to be present in the lobe, suppresses the PC lobe oscillation by a quisqualate-type receptor and appears to be used by one of the two classes of neurons in the PC lobe to generate the basic LFP oscillation. 4. The known activation of second messengers in Limax PC lobe by dopamine and serotonin together with their effects on the oscillatory rhythm suggest the hypothesis that these amines augment mechanisms mediating synaptic plasticity in the olfactory network, similar to hypothesized effects of amines in vertebrate olfactory systems. 5. The use of a distributed network of interneurons showing coherent oscillations may relate to the highly developed odor recognition and odor learning ability of Limax.
摘要
  1. 陆生软体动物大蛞蝓的前脑叶(PC叶)包含一个由局部嗅觉中间神经元组成的高度互联网络,该网络接收来自两对鼻的直接轴突投射。这个嗅觉处理网络在其局部场电位(LFP)中产生0.7赫兹的振荡,且在整个网络中是相干的。振荡的LFP受到施加于上鼻神经上皮的天然气味剂的调制。2. 已知存在于PC叶中的两种胺类物质,多巴胺和5-羟色胺,会增加PC叶振荡的频率并改变其波形。3. 谷氨酸是另一种已知存在于该叶中的假定神经递质,它通过quisqualate型受体抑制PC叶振荡,并且似乎被PC叶中两类神经元之一用于产生基本的LFP振荡。4. 已知多巴胺和5-羟色胺在大蛞蝓PC叶中激活第二信使,以及它们对振荡节律的影响,提示了这样一个假说:这些胺类增强了嗅觉网络中介导突触可塑性的机制,类似于胺类在脊椎动物嗅觉系统中的假定作用。5. 使用显示相干振荡的中间神经元分布式网络可能与大蛞蝓高度发达的气味识别和气味学习能力有关。

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