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A persistent prefrontal reference frame across time and task rules.


ABSTRACT: Behavior can be remarkably consistent, even over extended time periods, yet whether this is reflected in stable or 'drifting' neuronal responses to task features remains controversial. Here, we find a persistently active ensemble of neurons in the medial prefrontal cortex (mPFC) of mice that reliably maintains trajectory-specific tuning over several weeks while performing an olfaction-guided spatial memory task. This task-specific reference frame is stabilized during learning, upon which repeatedly active neurons show little representational drift and maintain their trajectory-specific tuning across long pauses in task exposure and across repeated changes in cue-target location pairings. These data thus suggest a 'core ensemble' of prefrontal neurons forming a reference frame of task-relevant space for the performance of consistent behavior over extended periods of time.

SUBMITTER: Muysers H 

PROVIDER: S-EPMC10923947 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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A persistent prefrontal reference frame across time and task rules.

Muysers Hannah H   Chen Hung-Ling HL   Hahn Johannes J   Folschweiller Shani S   Sigurdsson Torfi T   Sauer Jonas-Frederic JF   Bartos Marlene M  

Nature communications 20240308 1


Behavior can be remarkably consistent, even over extended time periods, yet whether this is reflected in stable or 'drifting' neuronal responses to task features remains controversial. Here, we find a persistently active ensemble of neurons in the medial prefrontal cortex (mPFC) of mice that reliably maintains trajectory-specific tuning over several weeks while performing an olfaction-guided spatial memory task. This task-specific reference frame is stabilized during learning, upon which repeate  ...[more]

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