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神经发育正常和异常过程中的敏感和关键期:神经发育障碍的框架。

Sensitive and critical periods during neurotypical and aberrant neurodevelopment: a framework for neurodevelopmental disorders.

机构信息

Department of Integrative Neurophysiology, Center for Neurogenomics & Cognitive Research, Neuroscience Campus Amsterdam, VU University, 1081 HV Amsterdam, The Netherlands.

出版信息

Neurosci Biobehav Rev. 2015 Mar;50:180-8. doi: 10.1016/j.neubiorev.2014.12.001. Epub 2014 Dec 10.

Abstract

During sensitive and critical periods, the brain undergoes significant plasticity from the level of individual synapses and neuronal networks up to the level of behaviour. Both sensitive and critical periods during neurotypical development of the young animal provide a framework to the early temporally-regulated modifications that occur in the nervous system. In neurodevelopmental disorders (NDD), notably autistic syndromes and intellectual disability, children exhibit developmental delays in motor, social and sensory processes and often miss key developmental milestones. In corresponding genetic NDD mouse models, recent data reveal temporally-regulated and in some cases, transient impairments in many neuronal and behavioural phenotypes during development. However, the mechanisms underlying these impairments in NDDs and their potential links with neurobiological mechanisms governing neurotypical development are not fully investigated. This article highlights the potential for the use of known critical and sensitive periods during vertebrate development to investigate and advance our understanding of the neural bases underlying impairments in these developmental disorders of the nervous system.

摘要

在敏感和关键时期,大脑会经历从单个突触和神经元网络到行为水平的显著可塑性。年轻动物的神经典型发育过程中的敏感和关键时期为神经系统中发生的早期、受时间调控的变化提供了一个框架。在神经发育障碍(NDD)中,特别是自闭症谱系障碍和智力残疾,儿童在运动、社交和感官过程中表现出发育迟缓,并且经常错过关键的发育里程碑。在相应的遗传 NDD 小鼠模型中,最近的数据显示,在发育过程中,许多神经元和行为表型存在受时间调控的、在某些情况下是短暂的损伤。然而,这些 NDD 中损伤的潜在机制及其与调节神经典型发育的神经生物学机制的潜在联系尚未得到充分研究。本文强调了在脊椎动物发育过程中利用已知的关键和敏感时期来研究和推进我们对这些神经系统发育障碍的神经基础的理解的潜力。

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