Literature DB >> 34642213

Hippocampus-Prefrontal Coupling Regulates Recognition Memory for Novelty Discrimination.

Cong Wang1,2, Teri M Furlong2,3,4, Peter G Stratton1, Conrad C Y Lee1,2,5, Li Xu1, Sam Merlin2,6, Chris Nolan1,2, Ehsan Arabzadeh2,5, Roger Marek7,2, Pankaj Sah7,2,8.   

Abstract

Recognition memory provides the ability to distinguish familiar from novel objects and places, and is important for recording and updating events to guide appropriate behavior. The hippocampus (HPC) and medial prefrontal cortex (mPFC) have both been implicated in recognition memory, but the nature of HPC-mPFC interactions, and its impact on local circuits in mediating this process is not known. Here we show that novelty discrimination is accompanied with higher theta activity (4-10 Hz) and increased c-Fos expression in both these regions. Moreover, theta oscillations were highly coupled between the HPC and mPFC during recognition memory retrieval for novelty discrimination, with the HPC leading the mPFC, but not during initial learning. Principal neurons and interneurons in the mPFC responded more strongly during recognition memory retrieval compared with learning. Optogenetic silencing of HPC input to the mPFC disrupted coupled theta activity between these two structures, as well as the animals' (male Sprague Dawley rats) ability to differentiate novel from familiar objects. These results reveal a key role of monosynaptic connections between the HPC and mPFC in novelty discrimination via theta coupling and identify neural populations that underlie this recognition memory-guided behavior.SIGNIFICANCE STATEMENT Many memory processes are highly dependent on the interregional communication between the HPC and mPFC via neural oscillations. However, how these two brain regions coordinate their oscillatory activity to engage local neural populations to mediate recognition memory for novelty discrimination is poorly understood. This study revealed that the HPC and mPFC theta oscillations and their temporal coupling is correlated with recognition memory-guided behavior. During novel object recognition, the HPC drives mPFC interneurons to effectively reduce the activity of principal neurons. This study provides the first evidence for the requirement of the HPC-mPFC pathway to mediate recognition memory for novelty discrimination and describes a mechanism for how this memory is regulated.
Copyright © 2021 the authors.

Entities:  

Keywords:  context; hippocampus; memory; novelty; prefrontal cortex; recognition

Mesh:

Year:  2021        PMID: 34642213      PMCID: PMC8612471          DOI: 10.1523/JNEUROSCI.1202-21.2021

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  65 in total

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  3 in total

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2.  The hippocampal formation and action at a distance.

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3.  Theta coupling within the medial prefrontal cortex regulates fear extinction and renewal.

Authors:  Cong Wang; Peter G Stratton; Pankaj Sah; Roger Marek
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