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Shift from Hippocampal to Neocortical Centered Retrieval Network with Consolidation

机译:从海马到整合的新皮层中心检索网络的转变

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摘要

The standard model of system-level consolidation posits that the hippocampus is part of a retrieval network for recent memories. According to this theory, the memories are gradually transferred to neocortical circuits with consolidation, where the connections within this circuit grow stronger and reorganized so that redundant and/or contextual details may be lost. Thus, remote memories are based on neocortical networks and can be retrieved independently of the hippocampus. To test this model, we measured regional brain activity and connectivity during retrieval with functional magnetic resonance imaging. Subjects were trained on two sets of face–location association and were tested with two different delays, 15 min and 24 h including a whole night of sleep. We hypothesized that memory traces of the locations associated with specific faces will be linked through the hippocampus for the retrieval of recently learned association, but with consolidation, the activity and the functional connectivity between the neocortical areas will increase. We show that posterior hippocampal activity related to high-confidence retrieval decreased and neocortical activity increased with consolidation. Moreover, the connectivity between the hippocampus and the neocortical regions decreased and in turn, cortico-cortical connectivity between the representational areas increased. The results provide mechanistic support for a two-level process of the declarative memory system, involving initial representation of new associations in a network including the hippocampus and subsequent consolidation into a predominantly neocortical network.
机译:系统级合并的标准模型认为,海马是最近记忆的检索网络的一部分。根据该理论,记忆逐渐整合合并转移至新皮质回路,其中该回路内的连接逐渐增强并重新组织,从而可能丢失冗余和/或上下文细节。因此,远程存储器基于新皮质网络,并且可以独立于海马体进行检索。为了测试该模型,我们在功能磁共振成像检索过程中测量了局部大脑活动和连接性。对受试者进行了两组面部位置关联的培训,并经过两次不同的延迟测试,分别为15分钟和24小时,包括一整夜的睡眠。我们假设与特定面孔相关联的位置的记忆痕迹将通过海马链接起来,以检索最近学到的关联,但是随着整合,新皮层区域之间的活动和功能连接性将会增加。我们显示,与高置信度取回相关的海马后部活动随着合并而减少,而新皮质活动增加。此外,海马体与新皮质区域之间的连通性降低,而代表区域之间的皮质-皮质连通性增加。结果为声明性记忆系统的两级过程提供了机械支持,包括在包括海马体在内的网络中新关联的初始表示,以及随后整合为主要为新皮层网络的过程。

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