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Engrams and Circuits Crucial for Systems Consolidation of a Memory

机译:字母和电路对于内存系统整合至关重要

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摘要

Episodic memories initially require rapid synaptic plasticity within the hippocampus for their formation and are gradually consolidated in neocortical networks for permanent storage. However, the engrams and circuits that support neocortical memory consolidation remain unknown. We found that neocortical prefrontal memory engram cells, critical for remote contextual fear memory, were rapidly generated during initial learning via inputs from both hippocampal-entorhinal cortex and basolateral amygdala. After their generation, the prefrontal engram cells, with support from hippocampal memory engram cells, became functionally mature with time. Whereas hippocampal engram cells gradually became silent with time, engram cells in the basolateral amygdala, which were necessary for fear memory, are maintained. Our data provide new insights into the functional reorganization of engrams and circuits underlying systems consolidation of memory.
机译:发作性记忆最初需要在海马体内快速突触可塑性来形成,并逐渐整合在新皮质网络中以进行永久性存储。然而,支持新皮层记忆整合的字母和电路仍然未知。我们发现,对于新的皮质前额叶记忆细胞来说,对于远程背景恐惧记忆至关重要,它是在初始学习过程中通过海马-肠皮质和基底外侧杏仁核的输入快速生成的。在产生后,前额叶印质细胞在海马记忆印记细胞的支持下随着时间的推移变得功能成熟。随着时间的流逝,海马印记细胞逐渐变得沉默,而保持恐惧记忆所必需的基底外侧杏仁核中的印记细胞得以维持。我们的数据为内存的系统整合背后的字母和电路的功能重组提供了新的见解。

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