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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Structure and function of gustatory neurons in the nucleus of the solitary tract. IV. The morphology and synaptology of GABA-immunoreactive terminals.
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Structure and function of gustatory neurons in the nucleus of the solitary tract. IV. The morphology and synaptology of GABA-immunoreactive terminals.

机译:孤立道核中味觉神经元的结构和功能。 IV。 GABA免疫反应性末端的形态和突触学。

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In the visual, auditory and somatosensory systems, insight into the synaptic arrangements of specific types of neurons has proven useful in understanding how sensory processing within that system occurs. The neurotransmitter GABA is present in the nucleus of the solitary tract and based on the fact that the vast majority of cells respond to GABA, its agonists and antagonists, and that over 45% of synaptic terminals in the rostral subdivision of the nucleus of the solitary tract are GABA-immunoreactive, GABA is thought to play an important role in gustatory processing. The following study was carried out to establish the distribution of GABA-immunoreactive terminals within the nucleus of the solitary tract. Specifically, the distribution on to physiologically-identified gustatory neurons was determined using post-embedding electron immuno-histochemistry. GABA-immunoreactive terminals synapse with gustatory neuronal somata and all portions of their dendrites, but non-GABAergic terminals synapse only with distal dendrites of the gustatory cells and on to correspondingly small unidentified dendritic profiles in the neuropil. There is a differential distribution of two subtypes of GABA-immunoreactive terminals on to proximal and distal portions of the gustatory neurons as well. Finally, a model for the synaptic arrangements involving gustatory and GABAergic neurons is proposed.
机译:在视觉,听觉和体感系统中,深入了解特定类型神经元的突触排列已被证明有助于理解该系统中的感官处理如何发生。神经递质GABA存在于孤立道的核中,其基于以下事实:绝大多数细胞对GABA,其激动剂和拮抗剂有反应,并且在孤立核的喙状细分中有超过45%的突触末端。道具有GABA免疫反应性,认为GABA在味觉加工中起重要作用。进行了以下研究,以建立GABA免疫反应性末端在孤立道核内的分布。具体而言,使用嵌入后电子免疫组织化学方法确定在生理上识别的味觉神经元上的分布。 GABA免疫反应性终末与味觉神经元的躯体及其所有树突突触,但非GABA刺激性终末突触仅与味觉细胞的远端树突突触,以及相应的神经纤维中较小的未识别树突状突触。在味觉神经元的近端和远端部分,还有两种亚型的GABA免疫反应性末端分布不同。最后,提出了涉及味觉和GABA能神经元的突触排列的模型。

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