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首页> 外文期刊>Trends in Neurosciences >An emerging molecular and cellular framework for memory processing by the hippocampus.
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An emerging molecular and cellular framework for memory processing by the hippocampus.

机译:海马记忆处理的新兴分子和细胞框架。

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摘要

The hippocampus plays a central role in memory consolidation, a process for converting short-term memory into cortically stored, long-lasting memory in the mammalian brain. Here, we review recent data and discuss the 'synaptic re-entry reinforcement' (SRR) hypothesis, which can account for the role of the hippocampus in memory consolidation at both the molecular and systems levels. The central idea of the SRR hypothesis is that reactivation of neural ensembles in the hippocampus during the consolidation period results in multiple rounds of NMDA-receptor-dependent synaptic reinforcement of the hippocampal memory traces created during initial learning. In addition, such reactivation and reinforcement processes permit the hippocampus to act as a 'coincidence regenerator', providing coordinated input that drives the coherent reactivation of cortical neurons, resulting in the progressive strengthening of cortical memory traces through reactivation of cortical NMDA receptors.
机译:海马在记忆整合中起着核心作用,记忆整合是将短期记忆转换为哺乳动物大脑皮质存储的持久性记忆的过程。在这里,我们回顾最近的数据,并讨论“突触重入强化”(SRR)假说,该假说可以说明海马在分子和系统水平在记忆整合中的作用。 SRR假设的中心思想是,巩固期海马神经元的重新激活导致在初始学习过程中产生的多轮NMDA受体依赖性突触增强海马记忆痕迹。另外,这种再激活和增强过程使海马体起“巧合再生器”的作用,提供协调的输入来驱动皮层神经元的相干再激活,从而通过皮层NMDA受体的再激活来逐步增强皮层记忆轨迹。

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