Literature DB >> 24596296

Hippocampal output area CA1 broadcasts a generalized novelty signal during an object-place recognition task.

Margaret Carr Larkin1, Christine Lykken, Lynne D Tye, Jeanette Graham Wickelgren, Loren M Frank.   

Abstract

Animals display an innate preference for novelty, spending more time exploring both novel objects and familiar objects in novel locations. This increase in exploration is thought to allow the animal to gather the information necessary to encode new experiences. Despite extensive evidence that increased exploration following spatial change requires the hippocampus, the pattern of hippocampal activity that supports this behavior remains unknown. We examined activity in hippocampal output area CA1 and one synapse upstream in area CA3 while freely behaving rats performed an object-place recognition task. We found that the presence of novelty substantially altered activity in CA1, but not in CA3. During exploration of displaced familiar objects and novel objects in unexpected locations, CA1 place cells showed robust increases in firing rate. These firing rate increases persisted during sharp wave ripples, when place cell representations of previous experiences are replayed. Unexpectedly, increases in CA1 activity were not spatially restricted to regions of the environment that underwent change, indicating a generalized novelty signal. We suggest that hippocampal area CA1 broadcasts the presence of novelty, rather than signaling what is novel, and simultaneously becomes more plastic, allowing the integration of new information into previously stored memories.
© 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  CA3; learning and memory; memory reactivation; place cell; sharp wave ripple

Mesh:

Year:  2014        PMID: 24596296      PMCID: PMC4065199          DOI: 10.1002/hipo.22268

Source DB:  PubMed          Journal:  Hippocampus        ISSN: 1050-9631            Impact factor:   3.899


  48 in total

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Authors:  J E Lisman; N A Otmakhova
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2.  Distinct roles of medial and lateral entorhinal cortex in spatial cognition.

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3.  Cingulate cortex projections to the parahippocampal region and hippocampal formation in the rat.

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4.  Cortical afferents of the perirhinal, postrhinal, and entorhinal cortices of the rat.

Authors:  R D Burwell; D G Amaral
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5.  Experience-dependent development of coordinated hippocampal spatial activity representing the similarity of related locations.

Authors:  Annabelle C Singer; Mattias P Karlsson; Ana R Nathe; Margaret F Carr; Loren M Frank
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6.  Deficits in cognition and synaptic plasticity in a mouse model of Down syndrome ameliorated by GABAB receptor antagonists.

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Journal:  J Neurosci       Date:  2012-07-04       Impact factor: 6.167

7.  Sustained increase in hippocampal sharp-wave ripple activity during slow-wave sleep after learning.

Authors:  Oxana Eschenko; Wiâm Ramadan; Matthias Mölle; Jan Born; Susan J Sara
Journal:  Learn Mem       Date:  2008-04-02       Impact factor: 2.460

8.  Transgenic inhibition of synaptic transmission reveals role of CA3 output in hippocampal learning.

Authors:  Toshiaki Nakashiba; Jennie Z Young; Thomas J McHugh; Derek L Buhl; Susumu Tonegawa
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9.  Network dynamics underlying the formation of sparse, informative representations in the hippocampus.

Authors:  Mattias P Karlsson; Loren M Frank
Journal:  J Neurosci       Date:  2008-12-24       Impact factor: 6.167

10.  Intracellular correlates of hippocampal theta rhythm in identified pyramidal cells, granule cells, and basket cells.

Authors:  A Ylinen; I Soltész; A Bragin; M Penttonen; A Sik; G Buzsáki
Journal:  Hippocampus       Date:  1995       Impact factor: 3.899

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  36 in total

1.  Complementary roles of human hippocampal subfields in differentiation and integration of spatial context.

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2.  Hippocampal Reactivation Extends for Several Hours Following Novel Experience.

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Journal:  J Neurosci       Date:  2018-12-10       Impact factor: 6.167

3.  The Ventral Midline Thalamus Mediates Hippocampal Spatial Information Processes upon Spatial Cue Changes.

Authors:  Dahee Jung; Yeowool Huh; Jeiwon Cho
Journal:  J Neurosci       Date:  2019-01-18       Impact factor: 6.167

4.  Hippocampal CA1 gamma power predicts the precision of spatial memory judgments.

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Journal:  Proc Natl Acad Sci U S A       Date:  2018-09-17       Impact factor: 11.205

5.  Effects of 1H + 16O Charged Particle Irradiation on Short-Term Memory and Hippocampal Physiology in a Murine Model.

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Journal:  Radiat Res       Date:  2017-11-14       Impact factor: 2.841

Review 6.  Building concepts one episode at a time: The hippocampus and concept formation.

Authors:  Michael L Mack; Bradley C Love; Alison R Preston
Journal:  Neurosci Lett       Date:  2017-08-08       Impact factor: 3.046

7.  Mild Traumatic Brain Injury Decreases Spatial Information Content and Reduces Place Field Stability of Hippocampal CA1 Neurons.

Authors:  John I Broussard; John B Redell; Jing Zhao; Mark E Maynard; Nobuhide Kobori; Alec Perez; Kimberly N Hood; Xu O Zhang; Anthony N Moore; Pramod K Dash
Journal:  J Neurotrauma       Date:  2019-10-11       Impact factor: 5.269

8.  Apolipoprotein E4 Causes Age-Dependent Disruption of Slow Gamma Oscillations during Hippocampal Sharp-Wave Ripples.

Authors:  Anna K Gillespie; Emily A Jones; Yuan-Hung Lin; Mattias P Karlsson; Kenneth Kay; Seo Yeon Yoon; Leslie M Tong; Philip Nova; Jessie S Carr; Loren M Frank; Yadong Huang
Journal:  Neuron       Date:  2016-05-05       Impact factor: 17.173

Review 9.  The medial prefrontal cortex - hippocampus circuit that integrates information of object, place and time to construct episodic memory in rodents: Behavioral, anatomical and neurochemical properties.

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Journal:  Neurosci Biobehav Rev       Date:  2020-04-13       Impact factor: 8.989

10.  Regulation of Hippocampal Firing by Network Oscillations during Sleep.

Authors:  Hiroyuki Miyawaki; Kamran Diba
Journal:  Curr Biol       Date:  2016-03-10       Impact factor: 10.834

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