Centre for Discovery Brain Sciences, Edinburgh Neuroscience, University of Edinburgh, 1 George Square, Edinburgh, EH8 9JZ, UK.
Danish Research Institute of Translational Neuroscience, DANDRITE, Nordic-EMBL Partnership for Molecular Medicine, Department of Biomedicine, Aarhus University, Hoegh-Guldbergsgade 10, 8000, Aarhus C, Denmark.
Mol Brain. 2022 Mar 24;15(1):24. doi: 10.1186/s13041-022-00908-9.
Alterations in long-range functional connectivity between distinct brain regions are thought to contribute to the encoding of memory. However, little is known about how the activation of an existing network of neocortical and hippocampal regions might support the assimilation of relevant new information into the preexisting knowledge structure or 'schema'. Using functional mapping for expression of plasticity-related immediate early gene products, we sought to identify the long-range functional network of paired-associate memory, and the encoding and assimilation of relevant new paired-associates. Correlational and clustering analyses for expression of immediate early gene products revealed that midline neocortical-hippocampal connectivity is strongly associated with successful memory encoding of new paired-associates against the backdrop of the schema, compared to both (1) unsuccessful memory encoding of new paired-associates that are not relevant to the schema, and (2) the mere retrieval of the previously learned schema. These findings suggest that the certain midline neocortical and hippocampal networks support the assimilation of newly encoded associative memories into a relevant schema.
不同脑区之间长程功能连接的改变被认为有助于记忆的编码。然而,对于现有的新皮质和海马区网络的激活如何支持相关新信息融入预先存在的知识结构或“图式”,我们知之甚少。我们使用功能映射来表达与可塑性相关的即刻早期基因产物,以确定成对联想记忆的长程功能网络,以及相关新的成对联想的编码和同化。即刻早期基因产物表达的相关和聚类分析表明,与(1)与图式无关的新成对联想的不成功记忆编码,以及(2)仅仅是先前学习的图式的检索相比,中线新皮质-海马连接与新成对联想的成功记忆编码强烈相关,而这些联想与图式相关。这些发现表明,某些中线新皮质和海马网络支持将新编码的联想记忆融入相关图式。