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A cortical–hippocampal–cortical loop of information processing during memory consolidation

机译:记忆整合过程中信息处理的皮质-海马-皮质循环

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摘要

Hippocampal replay during sharp-wave ripple events (SWRs) is thought to drive memory consolidation in hippocampal and cortical circuits. Changes in neocortical activity can precede SWR events, but whether and how these changes influence the content of replay remains unknown. Here we show that during sleep there is a rapid cortical–hippocampal–cortical loop of information flow around the times of SWRs. We recorded neural activity in auditory cortex (AC) and hippocampus of rats as they learned a sound-guided task and during sleep. We found that patterned activation in AC precedes and predicts the subsequent content of hippocampal activity during SWRs, while hippocampal patterns during SWRs predict subsequent AC activity. Delivering sounds during sleep biased AC activity patterns, and sound-biased AC patterns predicted subsequent hippocampal activity. These findings suggest that activation of specific cortical representations during sleep influences the identity of the memories that are consolidated into long-term stores.
机译:尖波波纹事件(SWR)期间的海马重播被认为可以驱动海马和皮质回路的记忆巩固。新皮层活动的变化可以先于SWR事件发生,但是这些变化是否以及如何影响重播的内容仍然未知。在这里,我们表明,在睡眠期间,在SWR的时间段内,信息流之间存在着快速的皮质-海马-皮质循环。我们在大鼠学习声音引导任务和睡眠期间记录了听觉皮层(AC)和海马的神经活动。我们发现交流中的模式激活先于并预测了SWR期间海马活动的后续内容,而SWR期间的海马模式则预测了随后的AC活动。在睡眠过程中传递声音会使交流活动模式偏向,而声音偏向的交流模式会预测随后的海马活动。这些发现表明,睡眠期间特定皮层表征的激活会影响整合到长期存储中的记忆的身份。

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