变质塑性
突触可塑性
突触标度
非突触性可塑性
突触增强
神经科学
突触疲劳
神经传递
可塑性
同突触可塑性
生物
物理
兴奋性突触后电位
抑制性突触后电位
热力学
生物化学
受体
作者
Pedro Mateos‐Aparicio,Antonio Rodríguez Moreno
标识
DOI:10.1007/978-3-030-12457-1_38
摘要
Synaptic plasticity is a fundamental property of neurons referring to the activity-dependent changes in the strength and efficacy of synaptic transmission at preexisting synapses. Such changes can last from milliseconds to hours, days, or even longer and are involved in learning and memory as well as in development and response of the brain to injuries. Several types of synaptic plasticity have been described across neuronal types, brain regions, and species, but all of them share in one way or another capital importance of Ca2+-mediated processes. In this chapter, we will focus on the Ca2+-dependent events necessary for the induction and expression of multiple forms of synaptic plasticity.
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