首页> 外文期刊>Trends in Neurosciences >Second-order neurones and receptor mechanisms in visual- and olfactory-information processing.
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Second-order neurones and receptor mechanisms in visual- and olfactory-information processing.

机译:视觉和嗅觉信息处理中的二级神经元和受体机制。

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摘要

The retina and olfactory bulb are relatively simple in their synaptic operation, and provide insight into the fundamental synaptic mechanisms of brain functions. In the visual system, bipolar cells receive glutamate input from photoreceptors, and segregate visual inputs into parallel ON and OFF responses to light exposure and termination. In the olfactory system, the mitral and tufted cells respond to excitatory inputs from olfactory receptor neurones, and undergo reciprocal regulation through dendrodendritic synapses with their associated granule cells. Recent studies of the synaptic operation and regulation of the bipolar, mitral and tufted cells, at the molecular level, have revealed the detailed synaptic mechanisms of the second-order neurones in the segregation and discrimination of sensory information, as well as the modulatory synaptic mechanism that is involved in olfactory-recognition memory formation.
机译:视网膜和嗅球的突触操作相对简单,可洞悉脑功能的基本突触机制。在视觉系统中,双极细胞接收来自感光器的谷氨酸输入,并将视觉输入分为对光线曝光和终止的平行ON和OFF响应。在嗅觉系统中,二尖瓣和簇状细胞对嗅觉受体神经元的兴奋性输入作出反应,并通过树突突触及其相关的颗粒细胞进行相互调节。在分子水平上对双极,二尖瓣和簇状细胞的突触操作和调节的最新研究揭示了二阶神经元在感觉信息的分离和识别中的详细突触机制,以及调节性突触机制。涉及到嗅觉识别记忆的形成。

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