Esteves Ingrid M, Chang HaoRan, Neumann Adam R, McNaughton Bruce L
Canadian Centre for Behavioural Neuroscience, Department of Neuroscience, University of Lethbridge, 4401 University Drive, Lethbridge, AB T1K 3M4, Canada.
Department of Neurobiology and Behaviour, University of California, Irvine, Irvine, CA 92697, USA.
iScience. 2023 Jan 14;26(2):105970. doi: 10.1016/j.isci.2023.105970. eCollection 2023 Feb 17.
Systems-level memory consolidation, a key concept in memory research, involves the conversion of memories that depend on the hippocampus for their formation into efficient hippocampus-independent forms, presumably encoded by cortico-cortical connections. Yet, little is understood about the nature of consolidated neural codes at the cellular ensemble level. Mice require an intact hippocampus for "virtual" spatial learning and to develop neocortical representations of the corresponding experiences. We find that, whereas a novel virtual environment is neither learned nor represented in superficial cortex following severe damage to hippocampus, pre-operatively learned memories and their corresponding sparse and widespread neural ensemble representations in cortical layers II-III are preserved, a of memory consolidation. These findings provide a new window for future study of the cellular mechanisms of memory consolidation.
系统水平的记忆巩固是记忆研究中的一个关键概念,它涉及将那些在形成过程中依赖海马体的记忆转化为高效的不依赖海马体的形式,推测是由皮质-皮质连接编码的。然而,在细胞集合水平上,对于巩固的神经编码的本质了解甚少。小鼠需要完整的海马体进行“虚拟”空间学习,并形成相应经历的新皮质表征。我们发现,虽然在海马体严重受损后,新的虚拟环境既不能在浅层皮质中被学习也不能被表征,但术前学习的记忆及其在皮质II-III层中相应的稀疏且广泛的神经集合表征得以保留,这是记忆巩固的一个标志。这些发现为未来研究记忆巩固的细胞机制提供了一个新窗口。