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成人大脑中的神经发生与海马可塑性

Neurogenesis and hippocampal plasticity in adult brain.

作者信息

Gu Yan, Janoschka Stephen, Ge Shaoyu

机构信息

Department of Neurobiology and Behavior, Stony Brook University, 100 Nicolls Road, Stony Brook, NY, 11794, USA,

出版信息

Curr Top Behav Neurosci. 2013;15:31-48. doi: 10.1007/7854_2012_217.

Abstract

Plasticity in the adult brain enables lifelong learning. The fundamental mechanism of adult neural plasticity is activity-dependent reorganization of pre-existing structure, in contrast to the widespread cellular proliferation and migration that occurs during development. Whereas adult hippocampal dentate gyrus continuously generates cohorts of neurons, and newborn neurons integrate into the existing neural circuit under the regulation of existing global and local neural activity, demonstrating a unique cellular and synaptic flexibility in adult brain. Exhibiting an enhanced structural and synaptic plasticity during the maturation, adult-born hippocampal neurons may represent a unique population for hippocampal function. Current evidence indicates that lifelong addition of new hippocampal neurons may extend early developmental plasticity to adulthood, which continuously rejuvenates adult brain. We reviewed most recent advancements in exploring the circuit and behavioral role of adult-born hippocampal neurons.

摘要

成人大脑的可塑性使终身学习成为可能。与发育过程中广泛发生的细胞增殖和迁移不同,成体神经可塑性的基本机制是依赖活动的已有结构重组。虽然成体海马齿状回持续产生神经元群,并且新生神经元在现有全局和局部神经活动的调节下整合到现有的神经回路中,这表明成人大脑具有独特的细胞和突触灵活性。成年海马神经元在成熟过程中表现出增强的结构和突触可塑性,可能代表了海马功能的一个独特群体。目前的证据表明,终身添加新的海马神经元可能将早期发育可塑性扩展到成年期,从而不断使成人大脑恢复活力。我们综述了探索成年海马神经元的神经回路和行为作用方面的最新进展。

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