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一个用于陈述性记忆的皮质-海马系统。

A cortical-hippocampal system for declarative memory.

作者信息

Eichenbaum H

机构信息

Laboratory of Cognitive Neurobiology, Department of Psychology, Boston University, 64 Cummington Street, Boston, Massachusetts 02215, USA.

出版信息

Nat Rev Neurosci. 2000 Oct;1(1):41-50. doi: 10.1038/35036213.

Abstract

Recent neurobiological studies have begun to reveal the cognitive and neural coding mechanisms that underlie declarative memory--our ability to recollect everyday events and factual knowledge. These studies indicate that the critical circuitry involves bidirectional connections between the neocortex, the parahippocampal region and the hippocampus. Each of these areas makes a unique contribution to memory processing. Widespread high-order neocortical areas provide dedicated processors for perceptual, motor or cognitive information that is influenced by other components of the system. The parahippocampal region mediates convergence of this information and extends the persistence of neocortical memory representations. The hippocampus encodes the sequences of places and events that compose episodic memories, and links them together through their common elements. Here I describe how these mechanisms work together to create and re-create fully networked representations of previous experiences and knowledge about the world.

摘要

最近的神经生物学研究已开始揭示构成陈述性记忆(即我们回忆日常事件和事实性知识的能力)基础的认知和神经编码机制。这些研究表明,关键的神经回路涉及新皮层、海马旁区域和海马体之间的双向连接。这些区域中的每一个都对记忆处理做出独特贡献。广泛的高阶新皮层区域为受系统其他组件影响的感知、运动或认知信息提供专门的处理器。海马旁区域介导该信息的汇聚,并延长新皮层记忆表征的持续时间。海马体对构成情景记忆的地点和事件序列进行编码,并通过它们的共同元素将它们联系在一起。在此,我将描述这些机制如何共同作用,以创建和重新创建关于先前经历和关于世界的知识的完全网络化表征。

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