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Infralimbic parvalbumin neural activity facilitates cued threat avoidance.

Yi-Yun Ho | Qiuwei Yang | Priyanka Boddu | David A Bulkin | Melissa R Warden
eLife | 2025

The infralimbic cortex (IL) is essential for flexible behavioral responses to threatening environmental events. Reactive behaviors such as freezing or flight are adaptive in some contexts, but in others a strategic avoidance behavior may be more advantageous. IL has been implicated in avoidance, but the contribution of distinct IL neural subtypes with differing molecular identities and wiring patterns is poorly understood. Here, we study IL parvalbumin (PV) interneurons in mice as they engage in active avoidance behavior, a behavior in which mice must suppress freezing in order to move to safety. We find that activity in inhibitory PV neurons increases during movement to avoid the shock in this behavioral paradigm, and that PV activity during movement emerges after mice have experienced a single shock, prior to learning avoidance. PV neural activity does not change during movement toward cued rewards or during general locomotion in the open field, behavioral paradigms where freezing does not need to be suppressed to enable movement. Optogenetic suppression of PV neurons increases the duration of freezing and delays the onset of avoidance behavior, but does not affect movement toward rewards or general locomotion. These data provide evidence that IL PV neurons support strategic avoidance behavior by suppressing freezing.

Pubmed ID: 40168058

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None found

Associated grants

  • Agency: New York Stem Cell Foundation,
    Id: Robertson Neuroscience Investigator Award
  • Agency: NIH Director's New Innovator Award,
    Id: DP2MH109982
  • Agency: NIMH NIH HHS, United States
    Id: DP2 MH109982
  • Agency: Whitehall Foundation,
    Id: Research Grant
  • Agency: Brain and Behavior Research Foundation,
    Id: NARSAD Young Investigator Award
  • Agency: Alfred P. Sloan Foundation,
    Id: Sloan Research Fellowship

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MATLAB (tool)

RRID:SCR_001622

Multi paradigm numerical computing environment and fourth generation programming language developed by MathWorks. Allows matrix manipulations, plotting of functions and data, implementation of algorithms, creation of user interfaces, and interfacing with programs written in other languages, including C, C++, Java, Fortran and Python. Used to explore and visualize ideas and collaborate across disciplines including signal and image processing, communications, control systems, and computational finance.

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PV-cre (tool)

RRID:IMSR_GPT:D000297

Mus musculus with name PV-cre from IMSR.

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C57BL/6J (organism)

RRID:IMSR_JAX:000664

Mus musculus with name C57BL/6J from IMSR.

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B6.Cg-Pvalbtm1.1(cre)Aibs/J (organism)

RRID:IMSR_JAX:012358

Mus musculus with name B6.Cg-Pvalbtm1.1(cre)Aibs/J from IMSR.

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