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与睡眠状态相比,清醒时学习过程中海马体-前额叶的重新激活更为强烈。

Hippocampal-Prefrontal Reactivation during Learning Is Stronger in Awake Compared with Sleep States.

作者信息

Tang Wenbo, Shin Justin D, Frank Loren M, Jadhav Shantanu P

机构信息

Graduate Program in Neuroscience, Brandeis University, Waltham, Massachusetts, 02453.

Howard Hughes Medical Institute, Department of Physiology and Kavli Institute for Fundamental Neuroscience, University of California, San Francisco, California, 94143, and.

出版信息

J Neurosci. 2017 Dec 6;37(49):11789-11805. doi: 10.1523/JNEUROSCI.2291-17.2017. Epub 2017 Oct 31.

Abstract

Hippocampal sharp-wave ripple (SWR) events occur during both behavior (awake SWRs) and slow-wave sleep (sleep SWRs). Awake and sleep SWRs both contribute to spatial learning and memory, thought to be mediated by the coordinated reactivation of behavioral experiences in hippocampal-cortical circuits seen during SWRs. Current hypotheses suggest that reactivation contributes to memory consolidation processes, but whether awake and sleep reactivation are suited to play similar or different roles remains unclear. Here we addressed that issue by examining the structure of hippocampal (area CA1) and prefrontal (PFC) activity recorded across behavior and sleep stages in male rats learning a spatial alternation task. We found a striking state difference: prefrontal modulation during awake and sleep SWRs was surprisingly distinct, with differing patterns of excitation and inhibition. CA1-PFC synchronization was stronger during awake SWRs, and spatial reactivation, measured using both pairwise and ensemble measures, was more structured for awake SWRs compared with post-task sleep SWRs. Stronger awake reactivation was observed despite the absence of coordination between network oscillations, namely hippocampal SWRs and cortical delta and spindle oscillations, which is prevalent during sleep. Finally, awake CA1-PFC reactivation was enhanced most prominently during initial learning in a novel environment, suggesting a key role in early learning. Our results demonstrate significant differences in awake and sleep reactivation in the hippocampal-prefrontal network. These findings suggest that awake SWRs support accurate memory storage and memory-guided behavior, whereas sleep SWR reactivation is better suited to support integration of memories across experiences during consolidation. Hippocampal sharp-wave ripples (SWRs) occur both in the awake state during behavior and in the sleep state after behavior. Awake and sleep SWRs are associated with memory reactivation and are important for learning, but their specific memory functions remain unclear. Here, we found profound differences in hippocampal-cortical reactivation during awake and sleep SWRs, with key implications for their roles in memory. Awake reactivation is a higher-fidelity representation of behavioral experiences, and is enhanced during early learning, without requiring coordination of network oscillations that is seen during sleep. Our findings suggest that awake reactivation is ideally suited to support initial memory formation, retrieval and planning, whereas sleep reactivation may play a broader role in integrating memories across experiences during consolidation.

摘要

海马体尖波涟漪(SWR)事件在行为期间(清醒时的SWR)和慢波睡眠期间(睡眠时的SWR)均会发生。清醒时和睡眠时的SWR均有助于空间学习和记忆,据认为这是由SWR期间在海马-皮层回路中行为体验的协同再激活介导的。目前的假说认为,再激活有助于记忆巩固过程,但清醒时和睡眠时的再激活是适合发挥相似还是不同的作用仍不清楚。在这里,我们通过检查在学习空间交替任务的雄性大鼠的行为和睡眠阶段记录的海马体(CA1区)和前额叶(PFC)活动结构来解决这个问题。我们发现了一个显著的状态差异:清醒时和睡眠时SWR期间的前额叶调制惊人地不同,具有不同的兴奋和抑制模式。清醒时SWR期间CA1-PFC同步更强,与任务后睡眠时的SWR相比,使用成对和整体测量方法测量的清醒时SWR的空间再激活更具结构性。尽管在睡眠期间普遍存在的网络振荡(即海马体SWR与皮层δ波和纺锤波振荡)之间缺乏协调,但仍观察到更强的清醒时再激活。最后,在新环境中的初始学习期间,清醒时CA1-PFC再激活最显著增强,表明其在早期学习中起关键作用。我们的结果表明海马-前额叶网络中清醒时和睡眠时再激活存在显著差异。这些发现表明,清醒时的SWR支持准确的记忆存储和记忆引导行为,而睡眠时的SWR再激活更适合在巩固过程中支持跨体验的记忆整合。海马体尖波涟漪(SWR)在行为期间的清醒状态和行为后的睡眠状态中均会出现。清醒时和睡眠时的SWR与记忆再激活相关,对学习很重要,但其具体的记忆功能仍不清楚。在这里,我们发现清醒时和睡眠时SWR期间海马-皮层再激活存在深刻差异,这对它们在记忆中的作用具有关键意义。清醒时的再激活是行为体验的更高保真度表征,并且在早期学习期间增强,无需睡眠期间出现的网络振荡协调。我们的发现表明,清醒时的再激活非常适合支持初始记忆形成、检索和规划,而睡眠时的再激活可能在巩固过程中跨体验整合记忆方面发挥更广泛的作用。

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