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Parvalbumin-expressing interneurons coordinate hippocampal network dynamics required for memory consolidation

  • Nicolette Ognjanovski
  • , Samantha Schaeffer
  • , Jiaxing Wu
  • , Sima Mofakham
  • , Daniel Maruyama
  • , Michal Zochowski
  • , Sara J. Aton
  • University of Michigan, Ann Arbor

Research output: Contribution to journalArticlepeer-review

188 Scopus citations

Abstract

Activity in hippocampal area CA1 is essential for consolidating episodic memories, but it is unclear how CA1 activity patterns drive memory formation. We find that in the hours following single-Trial contextual fear conditioning (CFC), fast-spiking interneurons (which typically express parvalbumin (PV)) show greater firing coherence with CA1 network oscillations. Post-CFC inhibition of PV+ interneurons blocks fear memory consolidation. This effect is associated with loss of two network changes associated with normal consolidation: (1) augmented sleep-Associated delta (0.5-4 Hz), theta (4-12 Hz) and ripple (150-250 Hz) oscillations; and (2) stabilization of CA1 neurons' functional connectivity patterns. Rhythmic activation of PV+ interneurons increases CA1 network coherence and leads to a sustained increase in the strength and stability of functional connections between neurons. Our results suggest that immediately following learning, PV+ interneurons drive CA1 oscillations and reactivation of CA1 ensembles, which directly promotes network plasticity and long-Term memory formation.

Original languageEnglish
Article number15039
JournalNature Communications
Volume8
DOIs
StatePublished - Apr 6 2017

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