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睡眠在大脑可塑性中的作用。

A role for sleep in brain plasticity.

作者信息

Dang-Vu T T, Desseilles M, Peigneux P, Maquet P

机构信息

Cyclotron Research Centre, University of Liege, Belgium.

出版信息

Pediatr Rehabil. 2006 Apr-Jun;9(2):98-118. doi: 10.1080/13638490500138702.

Abstract

The idea that sleep might be involved in brain plasticity has been investigated for many years through a large number of animal and human studies, but evidence remains fragmentary. Large amounts of sleep in early life suggest that sleep may play a role in brain maturation. In particular, the influence of sleep in developing the visual system has been highlighted. The current data suggest that both Rapid Eye Movement (REM) and non-REM sleep states would be important for brain development. Such findings stress the need for optimal paediatric sleep management. In the adult brain, the role of sleep in learning and memory is emphasized by studies at behavioural, systems, cellular and molecular levels. First, sleep amounts are reported to increase following a learning task and sleep deprivation impairs task acquisition and consolidation. At the systems level, neurophysiological studies suggest possible mechanisms for the consolidation of memory traces. These imply both thalamocortical and hippocampo-neocortical networks. Similarly, neuroimaging techniques demonstrated the experience-dependent changes in cerebral activity during sleep. Finally, recent works show the modulation during sleep of cerebral protein synthesis and expression of genes involved in neuronal plasticity.

摘要

睡眠可能与大脑可塑性有关这一观点已通过大量动物和人体研究探讨多年,但证据仍然零散。生命早期大量睡眠表明睡眠可能在大脑成熟过程中发挥作用。特别是,睡眠对视觉系统发育的影响已受到关注。目前的数据表明,快速眼动(REM)睡眠和非REM睡眠状态对大脑发育都很重要。这些发现强调了优化儿童睡眠管理的必要性。在成人大脑中,行为、系统、细胞和分子水平的研究都强调了睡眠在学习和记忆中的作用。首先,据报道,学习任务后睡眠量会增加,而睡眠剥夺会损害任务的获取和巩固。在系统层面,神经生理学研究提出了记忆痕迹巩固的可能机制。这些机制涉及丘脑皮质和海马体-新皮质网络。同样,神经成像技术显示了睡眠期间大脑活动的经验依赖性变化。最后,最近的研究表明睡眠期间大脑蛋白质合成以及与神经元可塑性相关基因的表达会受到调节。

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