Rothschild Gideon, Eban Elad, Frank Loren M
Department of Physiology and Kavli Institute for Fundamental Neuroscience, University of California, San Francisco, USA.
Google Inc., Mountain View, California, USA.
Nat Neurosci. 2017 Feb;20(2):251-259. doi: 10.1038/nn.4457. Epub 2016 Dec 12.
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.
在尖波涟漪事件(SWRs)期间,海马体重演被认为会驱动海马体和皮质回路中的记忆巩固。新皮质活动的变化可能先于SWR事件,但这些变化是否以及如何影响重演的内容仍不清楚。在这里,我们表明,在睡眠期间,围绕SWRs时间存在一个快速的皮质-海马体-皮质信息流回路。我们记录了大鼠在学习声音引导任务时以及睡眠期间听觉皮层(AC)和海马体中的神经活动。我们发现,AC中的模式化激活先于并预测了SWRs期间海马体活动的后续内容,而SWRs期间的海马体模式则预测了随后的AC活动。在睡眠期间发出声音会使AC活动模式产生偏差,而声音偏差的AC模式则预测了随后的海马体活动。这些发现表明,睡眠期间特定皮质表征的激活会影响巩固到长期存储中的记忆的特性。