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Analysis of coherent activity between retrosplenial cortex, hippocampus, thalamus, and anterior cingulate cortex during retrieval of recent and remote context fear memory

机译:近期和远距离情景恐惧记忆恢复过程中,脾后皮质,海马,丘脑和前扣带回皮质之间的连贯活动分析

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Memory for contextual fear conditioning relies upon the retrosplenial cortex (RSC) regardless of how long ago conditioning occurred, whereas areas connected to the RSC, such as the dorsal hippocampus (DH) and anterior cingulate cortex (ACC) appear to play time-limited roles. To better understand whether these brain regions functionally interact during memory processing and how the passage of time affects these interactions, we simultaneously recorded local field potentials (LFPs) from these three regions as well as anterior dorsal thalamus (ADT), which provides one of the strongest inputs to RSC, and measured coherence of oscillatory activity within the theta (4-12 Hz) and gamma (30-80 Hz) frequency bands. We identified changes of theta coherence related to encoding, retrieval, and extinction of context fear, whereas changes in gamma coherence were restricted to fear extinction. Specifically, exposure to a novel context and retrieval of recently acquired fear conditioning memory were associated with increased theta coherence between RSC and all three other structures. In contrast, RSC-DH and RSC-ADT theta coherence were decreased in mice that successfully retrieved, relative to mice that failed to retrieve, remote memory. Greater RSC-ADT theta and gamma coherence were observed during recent, compared to remote, extinction of freezing responses. Thus, the degree of coherence between RSC and connected brain areas may predict and contribute to context memory retrieval and retrieval-related phenomena such as fear extinction. Importantly, although theta coherence in this circuit increases during memory encoding and retrieval of recent memory, failure to decrease RSC-DH theta coherence might be linked to retrieval deficit in the long term, and possibly contribute to aberrant memory processing characteristic of neuropsychiatric disorders. (C) 2015 Elsevier Inc. All rights reserved.
机译:不管发生多长时间的适应,背景恐惧调节的记忆都依赖于脊髓后皮质(RSC),而与RSC连接的区域,例如背侧海马(DH)和前扣带回皮质(ACC)似乎起时间限制作用。为了更好地了解这些大脑区域在记忆处理过程中是否功能相互作用以及时间的流逝如何影响这些相互作用,我们同时记录了这三个区域的局部场电位(LFP)以及前背丘脑(ADT),后者提供了其中的一种最强的RSC输入,以及在theta(4-12 Hz)和γ(30-80 Hz)频段内测得的振荡活动的相干性。我们确定了与语境恐惧的编码,检索和消亡有关的theta连贯性变化,而伽玛连贯性的变化仅限于恐惧消灭。具体而言,接触新环境和恢复最近获得的恐惧条件记忆与RSC与所有其他三个结构之间的theta相干性增加有关。相反,相对于未能检索到远程记忆的小鼠,成功检索到的小鼠的RSC-DH和RSC-ADT theta相干性降低。与远程消亡的冰冻反应相比,近期观察到更大的RSC-ADT theta和γ相干性。因此,RSC与相连的大脑区域之间的连贯程度可以预测并有助于情境记忆的检索以及与检索有关的现象,例如恐惧的消亡。重要的是,尽管在记忆编码和最近记忆的检索过程中,该电路中的theta相干性增加,但长期未能降低RSC-DH theta相干性可能与检索不足有关,并且可能导致神经精神疾病的异常记忆处理特征。 (C)2015 Elsevier Inc.保留所有权利。

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