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Rehearsal initiates systems memory consolidation sleep makes it last

机译:排练启动系统内存整合睡眠使之持久

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摘要

After encoding, memories undergo a transitional process termed systems memory consolidation. It allows fast acquisition of new information by the hippocampus, as well as stable storage in neocortical long-term networks, where memory is protected from interference. Whereas this process is generally thought to occur slowly over time and sleep, we recently found a rapid memory systems transition from hippocampus to posterior parietal cortex (PPC) that occurs over repeated rehearsal within one study session. Here, we use fMRI to demonstrate that this transition is stabilized over sleep, whereas wakefulness leads to a reset to naïve responses, such as observed during early encoding. The role of sleep therefore seems to go beyond providing additional rehearsal through memory trace reactivation, as previously thought. We conclude that repeated study induces systems consolidation, while sleep ensures that these transformations become stable and long lasting. Thus, sleep and repeated rehearsal jointly contribute to long-term memory consolidation.
机译:编码后,内存将经历一个过渡过程,称为系统内存合并。它允许海马快速获取新信息,以及在保护记忆免受干扰的新皮质长期网络中稳定存储。尽管通常认为该过程会随着时间和睡眠的发生而缓慢发生,但我们最近发现,在一个研究阶段中,通过反复排练,海马迅速向顶叶后皮质(PPC)过渡了一个快速的记忆系统。在这里,我们使用功能磁共振成像来证明这种转变在整个睡眠过程中都是稳定的,而清醒导致重置为幼稚的响应,例如在早期编码中观察到的那样。因此,睡眠的作用似乎超出了通过记忆痕迹重新激活提供额外的排练的能力,如先前所认为的那样。我们得出的结论是,反复研究会导致系统整合,而睡眠可确保这些转换变得稳定和持久。因此,睡眠和反复排练共同有助于长期记忆巩固。

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