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人类内侧前额叶皮质活动的分化是长期记忆抗遗忘的基础。

Differentiation of Human Medial Prefrontal Cortex Activity Underlies Long-Term Resistance to Forgetting in Memory.

机构信息

Department of Psychology, University of Pennsylvania, Philadelphia, Pennsylvania 19104.

Department of Psychology, University of California, Davis, California 95616, and.

出版信息

J Neurosci. 2018 Nov 28;38(48):10244-10254. doi: 10.1523/JNEUROSCI.2290-17.2018. Epub 2018 Jul 16.

Abstract

It is well known that distributing study events over time leads to better memory over long time scales, compared with massing study events together. One explanation for such long-term resistance to forgetting is that distributed study leads to neural differentiation in memory, which supports retrieval of past experiences by disambiguating highly similar memory representations. Neuroanatomical models of episodic memory retrieval propose that the hippocampus and medial prefrontal cortex (MPFC) work together to enable retrieval of behaviorally appropriate memories. However, it is not known how representations in these regions jointly support resistance to forgetting long after initial learning. Using fMRI, we measured differentiation in retrieved memory representations following an extended delay in male and female human participants. After 1 week, word-object associations were better remembered if studied across 2 d (overnight), allowing associations to be learned in distinct temporal contexts, compared with learning within a single day (same day). MPFC retrieval patterns showed differentiation for overnight relative to same day memories, whereas hippocampal patterns reflected associative retrieval success. Overnight memory differentiation in MPFC was higher for associative than item memories and higher than differentiation assessed over a brain-wide set of retrieval-active voxels. The memory-related difference in MPFC pattern differentiation correlated with memory success for overnight learning and with hippocampal-MPFC functional connectivity. These results show that learning information across days leads to differentiated MPFC memory representations, reducing forgetting after 1 week, and suggest this arises from persistent interactions between MPFC and hippocampus. Neural activity in both the hippocampus and medial prefrontal cortex (MPFC) has been linked to memory-related representations, but prior work has not examined how these representations support episodic memory retrieval over extended time scales that are characteristic of everyday retrieval. We show that differentiation in MPFC activity 1 week after encoding is higher for retrieved information learned across 2 d compared with within a single day. In hippocampus, differentiation was greater for detailed memory retrieval but was not influenced by whether information had been learned over 1 or 2 d. Differentiation in MPFC predicted behavioral robustness to forgetting and was correlated with hippocampal-MPFC connectivity. The results suggest that context-based differentiation supports robust long-term memory via persistent MPFC-hippocampal interactions.

摘要

众所周知,与集中学习相比,将学习活动分散在不同时间进行会导致长期记忆更好。对于这种长期抗遗忘的现象,有一种解释是,分散学习导致记忆中的神经分化,通过消除高度相似的记忆表示来区分过去经历,从而支持对过去经验的检索。情景记忆检索的神经解剖学模型提出,海马体和内侧前额叶皮层(MPFC)共同作用,使行为适当的记忆能够被检索出来。然而,目前尚不清楚这些区域中的表示如何共同支持在初始学习后很久的抗遗忘能力。使用 fMRI,我们测量了男性和女性人类参与者在长时间延迟后检索到的记忆表示的分化。在 1 周后,如果在 2 天(过夜)内学习单词-对象关联,而不是在 1 天内学习(当天),则可以更好地记住关联。与当天的记忆相比,MPFC 的检索模式在夜间有分化,而海马体模式反映了关联检索的成功。与在整个大脑检索活跃体素上评估的分化相比,MPFC 中与过夜记忆的分化更高。与项目记忆相比,与关联记忆的分化更高。MPFC 模式分化的记忆相关差异与过夜学习的记忆成功以及海马体-MPFC 功能连接相关。这些结果表明,跨日学习会导致 MPFC 记忆表示的分化,从而减少 1 周后的遗忘,并表明这是由于 MPFC 和海马体之间持续的相互作用。海马体和内侧前额叶皮层(MPFC)的神经活动与记忆相关的表示有关,但之前的研究并未检查这些表示如何在日常检索特有的扩展时间范围内支持情景记忆检索。我们表明,与在 1 天内学习相比,在 2 天内学习的信息在编码后 1 周时在 MPFC 中的活动分化更高。在海马体中,对于详细的记忆检索,分化更大,但不受信息是在 1 天还是 2 天内学习的影响。MPFC 中的分化预测了行为抗遗忘的稳健性,并与海马体-MPFC 连接相关。结果表明,基于上下文的分化通过持续的 MPFC-海马体相互作用支持稳健的长期记忆。

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