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记忆巩固的替代概念和海马体在啮齿动物系统水平上的作用。

Alternative conceptions of memory consolidation and the role of the hippocampus at the systems level in rodents.

机构信息

Department of Neuroscience, Canadian Centre for Behavioural Neuroscience, The University of Lethbridge, Lethbridge, AB, Canada T1K 3M4.

出版信息

Curr Opin Neurobiol. 2011 Jun;21(3):446-51. doi: 10.1016/j.conb.2011.04.007. Epub 2011 May 16.

Abstract

We discuss very recent experiments with rodents addressing the idea that long-term memories initially depending on the hippocampus, over a prolonged period, become independent of it. No unambiguous recent evidence exists to substantiate that this occurs. Most experiments find that recent and remote memories are equally affected by hippocampus damage. Nearly all experiments that report spared remote memories suffer from two problems: retrieval could be based upon substantial regions of spared hippocampus and recent memory is tested at intervals that are of the same order of magnitude as cellular consolidation. Accordingly, we point the way beyond systems consolidation theories, both the Standard Model of Consolidation and the Multiple Trace Theory, and propose a simpler multiple storage site hypothesis. On this view, with event reiterations, different memory representations are independently established in multiple networks. Many detailed memories always depend on the hippocampus; the others may be established and maintained independently.

摘要

我们讨论了最近用啮齿动物进行的实验,这些实验探讨了一个观点,即长期记忆最初依赖于海马体,但经过长时间后,它会变得独立于海马体。没有明确的近期证据表明这种情况确实存在。大多数实验发现,近期记忆和远期记忆都会受到海马体损伤的同等影响。几乎所有报告记忆保留的实验都存在两个问题:检索可能基于大量未受损的海马体区域,并且近期记忆的测试间隔与细胞巩固的时间尺度相同。因此,我们提出了一种更简单的多存储位置假说,超越了系统巩固理论,包括巩固的标准模型和多重痕迹理论。在这种观点下,随着事件的重复,不同的记忆表现会在多个网络中独立建立。许多详细的记忆总是依赖于海马体;而其他记忆可能会独立建立和维持。

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