神经科学
加巴能
突触可塑性
变质塑性
谷氨酸的
抑制性突触后电位
非突触性可塑性
突触后电位
生物
突触标度
稳态可塑性
神经可塑性
发育可塑性
可塑性
谷氨酸受体
受体
物理
热力学
生物化学
作者
Chiayu Q. Chiu,Andrea Barberis,Michael J. Higley
标识
DOI:10.1038/s41583-019-0141-5
摘要
Cellular mechanisms that regulate the interplay of synaptic excitation and inhibition are thought to be central to the functional stability of healthy neuronal circuits. A growing body of literature demonstrates the capacity for inhibitory GABAergic synapses to exhibit long-term plasticity in response to changes in neuronal activity. Here, we review this expanding field of research, focusing on the diversity of mechanisms that link glutamatergic signalling, postsynaptic action potentials and inhibitory synaptic strength. Several lines of evidence indicate that multiple, parallel forms of plasticity serve to regulate activity at both the input and output domains of individual neurons. Overall, these varied phenomena serve to promote both stability and flexibility over the life of the organism.
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