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The hippocampal sharp wave-ripple in memory retrieval for immediate use and consolidation

机译:用于立即使用和整合的内存检索中的海马尖锐波纹

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摘要

Various cognitive functions have long been known to require the hippocampus. Recently, progress has been made in identifying the hippocampal neural activity patterns that implement these functions. One such pattern is the sharp wave-ripple (SWR), an event associated with highly synchronous neural firing in the hippocampus and modulation of neural activity in distributed brain regions. Hippocampal spiking during SWRs can represent past or potential future experience, and SWR-related interventions can alter subsequent memory performance. These findings and others suggest that SWRs support both memory consolidation and memory retrieval for processes such as decision-making. In addition, studies have identified distinct types of SWR based on representational content, behavioural state and physiological features. These various findings regarding SWRs suggest that different SWR types correspond to different cognitive functions, such as retrieval and consolidation. Here, we introduce another possibility-that a single SWR may support more than one cognitive function. Taking into account classic psychological theories and recent molecular results that suggest that retrieval and consolidation share mechanisms, we propose that the SWR mediates the retrieval of stored representations that can be utilized immediately by downstream circuits in decision-making, planning, recollection and/or imagination while simultaneously initiating memory consolidation processes.
机译:已知各种认知函数已知需要海马。最近,在确定实施这些功能的海马神经活动模式时取得了进展。一种这样的图案是尖锐的波纹(SWR),与海马中高度同步神经射击相关的事件以及分布式脑区中神经活动的调制。在SWRS期间的海马尖峰可以代表过去或潜在的未来经验,而SWR相关的干预措施可以改变后续的内存性能。这些调查结果和其他结果表明,SWRS支持内存整合和内存检索,例如决策等过程。此外,基于代表性含量,行为状态和生理特征,研究已经确定了不同类型的SWR。关于SWRS的这些各种结果表明,不同的SWR类型对应于不同的认知功能,例如检索和整合。在这里,我们介绍另一种可能性 - 单个SWR可以支持多个认知功能。考虑到经典的心理学理论和最近的分子结果,提出了检索和整合份额机制,我们建议SWR调解储存的储存表示,可以通过决策,规划,回忆和/或想象中的下游电路立即使用同时启动内存整合过程。

著录项

  • 来源
    《Nature reviews neuroscience》 |2018年第12期|共14页
  • 作者

    Joo Hannah R.; Frank Loren M.;

  • 作者单位

    Univ Calif San Francisco Med Scientist Training Program San Francisco CA 94143 USA;

    Univ Calif San Francisco Ctr Integrat Neurosci Kavli Inst Fundamental Neurosci San Francisco CA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经生理学;
  • 关键词

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