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February 26, 2026Nature Neuroscience0 citationsOpen Access

Orbitofrontal cortex drives predictive filtering of sensory responses

TGTaipin GuoMGMichellee M. GarciaPDPranathi R. Dandu

Key Points

  • The aim is to investigate the role of the orbitofrontal cortex in sensory habituation through predictive filtering mechanisms.
  • Evaluated two mechanistic explanations for habituation in mice
  • Conducted daily sound exposure experiments
  • Inactivated the orbitofrontal cortex to assess its effects on auditory processing
  • Analyzed top-down projections from the orbitofrontal cortex
  • Inactivating the orbitofrontal cortex reversed neural habituation in the primary auditory cortex
  • Top-down projections from the orbitofrontal cortex carried predictive signals that grew with sound exposure
  • These signals suppressed activity in the auditory cortex via inhibitory neurons

Abstract

Habituation is a crucial sensory filtering mechanism whose dysregulation can lead to a continuously intense world in disorders with hypersensitivity. Although habituation is often termed the simplest form of learning, its circuit mechanisms remain elusive. Conventional peripheral explanations fail to fully account for long-term habituation in complex sensory environments, leading to theories proposing top-down regulation. Here we evaluated two competing top-down mechanistic explanations for habituation in mice (growth in predictive filtering and waning of novelty-driven amplification) and identified an unexpected role for the orbitofrontal cortex (OFC) in predictive filtering. After daily sound exposure, neural habituation in the primary auditory cortex (A1) was reversed by inactivating the OFC. Top-down projections from the OFC, but not other frontal areas, carried predictive signals that grew with daily sound experience and suppressed A1 via somatostatin-expressing inhibitory neurons. Thus, prediction signals from the OFC cancel out anticipated stimuli by generating their ‘negative images’ in sensory cortices. Top-down projections from the orbitofrontal cortex carry predictive signals that grow with sound experience and suppress the auditory cortex via inhibitory circuits, revealing a predictive mechanism for sensory habituation.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/699fe33695ddcd3a253e6e97https://doi.org/10.1038/s41593-026-02217-z
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