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大鼠和人类的记忆在时间上的转化依赖于神经活动模式的改变。

Changes in patterns of neural activity underlie a time-dependent transformation of memory in rats and humans.

机构信息

Rotman Research Institute, Toronto, Ontario, Canada.

Department of Psychology and Neuroscience, Department of Biology, Baylor University, Waco, Texas.

出版信息

Hippocampus. 2018 Oct;28(10):745-764. doi: 10.1002/hipo.23009.

Abstract

The dynamic process of memory consolidation involves a reorganization of brain regions that support a memory trace over time, but exactly how the network reorganizes as the memory changes remains unclear. We present novel converging evidence from studies of animals (rats) and humans for the time-dependent reorganization and transformation of different types of memory as measured both by behavior and brain activation. We find that context-specific memories in rats, and naturalistic episodic memories in humans, lose precision over time and activity in the hippocampus decreases. If, however, the retrieved memories retain contextual or perceptual detail, the hippocampus is engaged similarly at recent and remote timepoints. As the interval between the timepoint increases, the medial prefrontal cortex is engaged increasingly during memory retrieval, regardless of the context or the amount of retrieved detail. Moreover, these hippocampal-frontal shifts are accompanied by corresponding changes in a network of cortical structures mediating perceptually-detailed as well as less precise, schematic memories. These findings provide cross-species evidence for the crucial interplay between hippocampus and neocortex that reflects changes in memory representation over time and underlies systems consolidation.

摘要

记忆巩固的动态过程涉及到支持记忆痕迹随时间变化的脑区的重新组织,但记忆变化时网络如何重新组织仍不清楚。我们从动物(大鼠)和人类的研究中提供了新的、趋同的证据,证明了不同类型的记忆在行为和大脑激活方面随时间的重新组织和转化。我们发现,大鼠的特定于情境的记忆和人类的自然情节记忆会随着时间的推移而失去精确性,并且海马体的活动减少。然而,如果检索到的记忆保留了上下文或感知细节,那么海马体在最近和较远的时间点都会以相似的方式参与。随着时间间隔的增加,在记忆检索过程中,内侧前额叶皮层的参与程度越来越高,而与上下文或检索到的细节数量无关。此外,这些海马体-前额叶的转变伴随着介导感知详细和不太精确的图式记忆的皮质结构网络的相应变化。这些发现为跨物种的证据提供了支持,即海马体和新皮层之间的关键相互作用反映了记忆表征随时间的变化,并为系统巩固提供了基础。

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