变质塑性
突触可塑性
细胞外基质
神经科学
突触标度
丝状体
神经周围网
细胞生物学
稳态可塑性
树突棘
长时程增强
非突触性可塑性
神经可塑性
生物
生物化学
肌动蛋白
海马结构
受体
作者
Alexander Dityatev,Melitta Schachner,P. Sonderegger
摘要
Recent studies have deepened our understanding of multiple mechanisms by which extracellular matrix (ECM) molecules regulate various aspects of synaptic plasticity and have strengthened a link between the ECM and learning and memory. New findings also support the view that the ECM is important for homeostatic processes, such as scaling of synaptic responses, metaplasticity and stabilization of synaptic connectivity. Activity-dependent modification of the ECM affects the formation of dendritic filopodia and the growth of dendritic spines. Thus, the ECM has a dual role as a promoter of structural and functional plasticity and as a degradable stabilizer of neural microcircuits. Both of these aspects are likely to be important for mental health.
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