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人类脑电图中与睡眠纺锤波相关的活动及其与一般认知和学习能力的关系。

Sleep spindle-related activity in the human EEG and its relation to general cognitive and learning abilities.

作者信息

Schabus M, Hödlmoser K, Gruber G, Sauter C, Anderer P, Klösch G, Parapatics S, Saletu B, Klimesch W, Zeitlhofer J

机构信息

University of Salzburg, Division of Physiological Psychology, Hellbrunnerstr. 34, 5020 Salzburg, Austria.

出版信息

Eur J Neurosci. 2006 Apr;23(7):1738-46. doi: 10.1111/j.1460-9568.2006.04694.x.

Abstract

Stage 2 sleep spindles have been previously viewed as useful markers for the development and integrity of the CNS and were more currently linked to 'offline re-processing' of implicit as well as explicit memory traces. Additionally, it had been discussed if spindles might be related to a more general learning or cognitive ability. In the present multicentre study we examined the relationship of automatically detected slow (< 13 Hz) and fast (> 13 Hz) stage 2 sleep spindles with: (i) the Raven's Advanced Progressive Matrices (testing 'general cognitive ability'); as well as (ii) the Wechsler Memory scale-revised (evaluating memory in various subdomains). Forty-eight healthy subjects slept three times (separated by 1 week) for a whole night in a sleep laboratory with complete polysomnographic montage. Whereas the first night only served adaptation and screening purposes, the two remaining nights were preceded either by an implicit mirror-tracing or an explicit word-pair association learning or (corresponding) control task. Robust relationships of slow and fast sleep spindles with both cognitive as well as memory abilities were found irrespectively of whether learning occurred before sleep. Based on the present findings we suggest that besides being involved in shaping neuronal networks after learning, sleep spindles do reflect important aspects of efficient cortical-subcortical connectivity, and are thereby linked to cognitive- and memory-related abilities alike.

摘要

第二阶段睡眠纺锤波先前被视为中枢神经系统发育和完整性的有用标志物,最近又与内隐和外显记忆痕迹的“离线再处理”相关联。此外,还讨论了纺锤波是否可能与更一般的学习或认知能力有关。在本多中心研究中,我们研究了自动检测到的慢波(<13Hz)和快波(>13Hz)第二阶段睡眠纺锤波与以下因素的关系:(i)瑞文高级渐进矩阵测验(测试“一般认知能力”);以及(ii)韦氏记忆量表修订版(评估各个子领域的记忆)。48名健康受试者在配备完整多导睡眠图监测设备的睡眠实验室中,分三次(间隔1周)进行整夜睡眠。第一晚仅用于适应和筛查,其余两晚之前分别进行内隐镜像追踪或外显词对联想学习或(相应的)对照任务。无论学习是否在睡眠前发生,均发现慢波和快波睡眠纺锤波与认知能力和记忆能力之间存在密切关系。基于目前的研究结果,我们认为,睡眠纺锤波除了参与学习后神经网络的塑造外,确实反映了高效皮质-皮质下连接的重要方面,因此与认知和记忆相关能力都有关联。

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