Task-stage-specific modes of beta frequency coordination in the hippocampal-prefrontal network

Cognitive tasks typically consist of multiple stages with distinct computations. Yet how oscillatory dynamics across distributed brain networks switch to support the computations required for each task stage remains poorly understood. The hippocampal-neocortical networks show prominent beta oscillations (15-30 Hz) which are hypothesized to facilitate long-range interactions required for a range of spatial, operant, and cue-based tasks. However, it is unknown how beta oscillations differentially modulate the hippocampal-neocortical networks to support specific cognitive processes for each task stage. To characterize beta oscillatory dynamics in hippocampal-neocortical networks, we recorded local field potential and single-unit activity in the CA1 region of the hippocampus and the prefrontal cortex (PFC) of the neocortex while rats performed an odor-guided two-alternative forced-choice task. We focused on two task stages requiring different cognitive processes: cue sampling and goal attainment. We found that these two stages showed unique patterns of beta-frequency coordination between the CA1 and PFC, including differences for subbands of beta. Furthermore, we found that ensemble spiking activity patterns in the CA1 and PFC distinguished between the two task stages, with the CA1 expressing spatial and the PFC expressing non-spatial task correlates. Beta oscillations also showed task-stage-specific phase modulation of subsets of the CA1 and PFC populations. Our findings demonstrate that beta-frequency coordination in hippocampal-neocortical networks switches between functional modes, reconfiguring these networks to support the computational requirements for distinct stages within a cognitive task.

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Publication Details

Journal
Journal of Neurophysiology
Published
2026-09-17
DOI
https://doi.org/10.1152/jn.00232.2026
Primary Topic
Neural dynamics and brain function
Type
article
Field-Weighted Citation Impact
0.00

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article

Task-stage-specific modes of beta frequency coordination in the hippocampal-prefrontal network

Pınar Toptaş, Jai Y. Yu, Uma Mani, Zachary M. Leveroni et al.
Journal of Neurophysiology
Neural dynamics and brain function
article

Task-stage-specific modes of beta frequency coordination in the hippocampal-prefrontal network

Pınar Toptaş, Jai Y. Yu, Uma Mani, Zachary M. Leveroni, Audrey E. Kaye, Jacob W. Proctor-Bonbright, Glingna Wang, Jaquelin Gutierrez, Ken Lew, Bryan Garcia
article en

Abstract

Cognitive tasks typically consist of multiple stages with distinct computations. Yet how oscillatory dynamics across distributed brain networks switch to support the computations required for each task stage remains poorly understood. The hippocampal-neocortical networks show prominent beta oscillations (15-30 Hz) which are hypothesized to facilitate long-range interactions required for a range of spatial, operant, and cue-based tasks. However, it is unknown how beta oscillations differentially modulate the hippocampal-neocortical networks to support specific cognitive processes for each task stage. To characterize beta oscillatory dynamics in hippocampal-neocortical networks, we recorded local field potential and single-unit activity in the CA1 region of the hippocampus and the prefrontal cortex (PFC) of the neocortex while rats performed an odor-guided two-alternative forced-choice task. We focused on two task stages requiring different cognitive processes: cue sampling and goal attainment. We found that these two stages showed unique patterns of beta-frequency coordination between the CA1 and PFC, including differences for subbands of beta. Furthermore, we found that ensemble spiking activity patterns in the CA1 and PFC distinguished between the two task stages, with the CA1 expressing spatial and the PFC expressing non-spatial task correlates. Beta oscillations also showed task-stage-specific phase modulation of subsets of the CA1 and PFC populations. Our findings demonstrate that beta-frequency coordination in hippocampal-neocortical networks switches between functional modes, reconfiguring these networks to support the computational requirements for distinct stages within a cognitive task.

Journal of Neurophysiology
University of Chicago (US)
Whitehall Foundation, National Institute of General Medical Sciences, National Institute of Neurological Disorders and Stroke
Openalex Percentile: Top 10%
Neural dynamics and brain function
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