School of Psychology, Georgia Institute of Technology, Atlanta, Georgia, USA.
Department of Psychological and Brain Sciences, Center for Systems Neuroscience, and Center for Memory and Brain, Boston University, Boston, Massachusetts, USA.
Hippocampus. 2021 Sep;31(9):1003-1019. doi: 10.1002/hipo.23365. Epub 2021 May 26.
A fundamental question in memory research is how the hippocampus processes contextual cues to retrieve distinct mnemonic associations. Prior research has emphasized the importance of hippocampal-prefrontal interactions for context-dependent memory. Our fMRI study examined the human medial temporal lobes (MTL) and their prefrontal interactions when retrieving memories associated with hierarchically organized task contexts. Participants learned virtual object-location associations governed by subordinate and superordinate task rules, which could be independently cued to change. On each fMRI trial, participants retrieved the correct object for convergent rule and location contextual information. Results demonstrated that hippocampal activity and hippocampal-prefrontal functional interconnectivity distinguished retrieval under different levels of hierarchically organized task rules. In explicit contrast to the hippocampal tail, anterior (body and head) regions were recruited specifically for superordinate changes in the contextual hierarchy. The hippocampal body also differed in its functional connectivity with the prefrontal cortex for superordinate versus subordinate changes. Our findings demonstrate a gradient in MTL for associative retrieval under changing task rules, and advance understanding of hippocampal-prefrontal interactions that support flexible contextual memory.
记忆研究中的一个基本问题是海马体如何处理上下文线索以检索不同的记忆联想。先前的研究强调了海马体-前额叶相互作用对于上下文相关记忆的重要性。我们的 fMRI 研究考察了人类内侧颞叶(MTL)及其在检索与层次化任务上下文相关的记忆时与前额叶的相互作用。参与者学习受从属和上级任务规则支配的虚拟物体-位置关联,这些规则可以独立提示更改。在每个 fMRI 试验中,参与者检索与收敛规则和位置上下文信息对应的正确对象。结果表明,海马体活动和海马体-前额叶功能连接区分了在不同层次组织的任务规则下的检索。与海马体尾部明显相反,前部(身体和头部)区域专门用于上下文层次结构中的上级变化。海马体体部对于上级与下级变化的与前额叶皮层的功能连接也不同。我们的研究结果表明,在不断变化的任务规则下,MTL 中的关联检索存在梯度,并深入了解支持灵活上下文记忆的海马体-前额叶相互作用。