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Neural oscillation as a selective modulatory mechanism on decision confidence, speed and accuracy

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Abstract

Neural oscillations have been associated with decision-making processes, but their underlying network mechanisms remain unclear. This study investigates how neural oscillations influence decision network models of competing cortical columns with varying intrinsic and emergent timescales. Our findings reveal that decision networks with faster excitatory than inhibitory synapses are more susceptible to oscillatory modulations. Higher in-phase oscillation amplitude reduces decision confidence without affecting accuracy, while decision speed increases. In contrast, antiphase modulation increases decision accuracy, confidence, and speed. Increasing oscillation frequency reverses these effects. Changing oscillatory phase difference gradually modulates decision behavior, with decision confidence affected nonlinearly. Moreover, neural resonance can further enhance modulatory susceptibility for network with faster excitatory than inhibitory synapses. These effects decouple decision accuracy, speed, and confidence, challenging standard speed-accuracy trade-off. These phenomena can be explained by excitatory neural populations contributing more to in-phase modulation, while inhibitory neural populations contribute more to antiphase modulation. State-space trajectories’ momentum swinging with respect to network steady states and decision uncertainty manifold further provide insights into the neural circuit mechanisms. Our work provides mechanistic insights into how neurobiological diversity shapes decision-making processes in the presence of ubiquitous neural oscillations
Original languageEnglish
Article numbere0880252025
JournalThe Journal of Neuroscience
Volume45
Issue number49
Early online date22 Oct 2025
DOIs
Publication statusPublished (in print/issue) - 3 Dec 2025

Bibliographical note

Copyright © 2025 the authors.

Funding

Health and Social Care Research and Development (HSC R&D), STL/5540/19 Medical Research Council (MRC), MC_PC_20020

FundersFunder number
HSC R&DSTL/5540/19
Medical Research CouncilMC_PC_20020

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • Neural oscillation modulation
    • speed-accuracy trade-off
    • cortical column network model
    • decision-making model
    • synaptic dynamics
    • Multiscale
    • Neurons/physiology
    • Humans
    • Animals
    • Reaction Time/physiology
    • Decision Making/physiology
    • Models, Neurological
    • Nerve Net/physiology
    • neural oscillation modulation
    • multiscale

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