Fogel Stuart M, Smith Carlyle T, Beninger Richard J
Centre for Neuroscience Studies, Queen's University, Kingston, Ontario, Canada.
Brain Res Bull. 2009 Aug 14;79(6):445-51. doi: 10.1016/j.brainresbull.2009.03.002. Epub 2009 Mar 28.
What processes are involved in the formation of enduring memory traces? Sleep has been proposed to play a role in memory consolidation and the present study provides evidence to support 2-stage models of sleep and memory including both non-rapid eye movement (NREM) and rapid eye movement (REM) sleep. Previous research has shown REM sleep increases following avoidance learning and memory is impaired if REM deprivation occurs during these post-training periods indicating that REM sleep may have a role in memory consolidation processes. These discrete post-training periods have been termed REM sleep windows (RSWs). It is not known whether the electroencephalogram has unique characteristics during the RSW. Further investigation of the RSW was one of the primary goals of this study. We investigated the epidural-recorded electrophysiological learning-related changes following avoidance training in rats. Theta power increased in the learning group during the RSW, suggesting that theta is involved in memory consolidation during this period. Sleep spindles subsequently increased in slow wave sleep (SWS). The results suggest that both NREM and REM sleep are involved in sleep-dependent memory consolidation, and provide support for existing 2-stage models. Perhaps first theta increases to organize and consolidate material via hippocampal-neocortical dialogue, followed by subsequent refinement in the cortex by spindles during SWS.
形成持久记忆痕迹涉及哪些过程?睡眠被认为在记忆巩固中起作用,本研究提供了证据支持包括非快速眼动(NREM)睡眠和快速眼动(REM)睡眠的睡眠与记忆的两阶段模型。先前的研究表明,在回避学习后REM睡眠增加,如果在这些训练后阶段出现REM剥夺,记忆会受损,这表明REM睡眠可能在记忆巩固过程中起作用。这些离散的训练后阶段被称为REM睡眠窗口(RSW)。尚不清楚脑电图在RSW期间是否具有独特特征。对RSW的进一步研究是本研究的主要目标之一。我们研究了大鼠回避训练后硬膜外记录的与学习相关的电生理变化。在RSW期间,学习组的θ波功率增加,表明θ波在此期间参与记忆巩固。随后慢波睡眠(SWS)中的睡眠纺锤波增加。结果表明,NREM睡眠和REM睡眠都参与了依赖睡眠的记忆巩固,并为现有的两阶段模型提供了支持。也许首先是θ波增加,通过海马-新皮层对话来组织和巩固材料,随后在SWS期间由纺锤波在皮层中进行后续细化。