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Does the fusion pore contribute to synaptic plasticity?

机译:融合孔是否有助于突触可塑性?

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摘要

How synapses change their strength in response to impinging neural activity is a fundamental issue for understanding how the brain molds its circuitry in response to behavioral experience. Although a growing number of studies reveal the involvement of postsynaptic changes contributing to synaptic plasticity in brain circuits, the involvement of presynaptic factors has been implied by several studies. Most recently, several works point to the mechanism of vesicle fusion as a new possible locus for the modification of presynaptic synaptic strength. However, it is not yet clear to what extent such changes affect the simplest form of information transfer in the brain--the transmission of a single action potential.
机译:突触如何响应撞击的神经活动而改变其强度是了解大脑如何根据行为经验塑造其电路的一个基本问题。尽管越来越多的研究表明突触后变化参与了脑回路中的突触可塑性,但一些研究隐含了突触前因子的参与。最近,一些工作指出了囊泡融合的机制,作为改变突触前突触强度的一种新的可能基因座。然而,目前尚不清楚这种变化在多大程度上影响着大脑中最简单的信息传递形式-单个动作电位的传递。

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