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睡眠纺锤波:概述

Sleep spindles: an overview.

作者信息

De Gennaro Luigi, Ferrara Michele

机构信息

Department of Psychology, University of Rome, Italy.

出版信息

Sleep Med Rev. 2003 Oct;7(5):423-40. doi: 10.1053/smrv.2002.0252.

Abstract

Sleep spindles are a distinctive EEG phasic feature of NREM sleep and are prevalent during stage 2 as compared to slow wave sleep. While the neurophysiological mechanisms of spindle generation, that involves thalamic and corticothalamic networks, have been recently delineated and are briefly reviewed, their definitive functional meaning still remains to be elucidated. This review summarizes the present knowledge on visually scored and automatically detected spindles, as well as the literature on EEG power in the sigma band. Among the factors known to affect sleep spindles and sigma activity, their intra-cycle temporal dynamics, their time-course across sleep cycles, the reciprocal relationship with delta activity, the effects of sleep deprivation, of circadian factors and of ageing, and their role in information processing have been discussed. Moreover, specific attention has been paid to the existence of functionally and topographically distinct slow- and fast-spindles, also taking into account the presence of large inter-individual differences. Nevertheless, several fundamental issues remain to be elucidated: the physiological mechanisms controlling age-related changes in spindle parameters; the role of melatonin as a spindle-promoting agent; the relationships between plastic mechanisms (after stroke, or as a consequence of learning) and modifications in spindle activity; the possibility of using some spindle parameters as an index of the severity of developmental disorders in abnormal maturational processes.

摘要

睡眠纺锤波是非快速眼动睡眠独特的脑电图相位特征,与慢波睡眠相比,在睡眠2期更为普遍。虽然涉及丘脑和皮质丘脑网络的纺锤波产生的神经生理机制最近已被阐明并简要回顾,但它们的确切功能意义仍有待阐明。本综述总结了目前关于视觉评分和自动检测到的纺锤波的知识,以及关于西格玛频段脑电图功率的文献。在已知影响睡眠纺锤波和西格玛活动的因素中,讨论了它们的周期内时间动态、跨睡眠周期的时间进程、与δ活动的相互关系、睡眠剥夺的影响、昼夜节律因素和衰老的影响,以及它们在信息处理中的作用。此外,还特别关注了功能和地形上不同的慢纺锤波和快纺锤波的存在,同时也考虑到个体间存在的巨大差异。然而,仍有几个基本问题有待阐明:控制纺锤波参数与年龄相关变化的生理机制;褪黑素作为纺锤波促进剂的作用;塑性机制(中风后或学习的结果)与纺锤波活动改变之间的关系;使用某些纺锤波参数作为异常成熟过程中发育障碍严重程度指标的可能性。

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