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The Secrets of a Functional Synapse – From a Computational and Experimental Viewpoint

机译:功能性突触的秘密–从计算和实验的角度

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摘要

BackgroundNeuronal communication is tightly regulated in time and in space. The neuronal transmission takes place in the nerve terminal, at a specialized structure called the synapse. Following neuronal activation, an electrical signal triggers neurotransmitter (NT) release at the active zone. The process starts by the signal reaching the synapse followed by a fusion of the synaptic vesicle and diffusion of the released NT in the synaptic cleft; the NT then binds to the appropriate receptor, and as a result, a potential change at the target cell membrane is induced. The entire process lasts for only a fraction of a millisecond. An essential property of the synapse is its capacity to undergo biochemical and morphological changes, a phenomenon that is referred to as synaptic plasticity.
机译:背景神经通讯在时间和空间上受到严格监管。神经元传递发生在神经末梢的特殊结构,称为突触。神经元激活后,电信号触发活动区的神经递质(NT)释放。该过程开始于信号到达突触,然后突触囊泡融合并释放的NT在突触裂隙中扩散。然后NT与适当的受体结合,结果在靶细胞膜上引起电位改变。整个过程仅持续一毫秒的时间。突触的基本特性是其经历生化和形态变化的能力,这种现象称为突触可塑性。

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