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Single-Node Wilson--Cowan Model Accounts for Speech-Evoked $\gamma$-Band Deficits in Schizophrenia

Neurons and Cognition 2026-01-22 v1

Abstract

Cortical gamma (γ\gamma)-band activity reflects local excitation-inhibition (E/I) balance. In schizophrenia (SCZ), reduced task-evoked gamma suggests altered E/I dynamics, but it is unclear whether differences stem from input properties or systematic shifts in E/I operating point and gain. We coupled a cochlear-inspired speech front end to a Wilson-Cowan E/I model to simulate gamma responses across three conditions: Healthy, SCZ-speech, and SCZ-semantics. Metrics included event-related spectral perturbation (ERSPγ_\gamma) and threshold-time fraction (γ\gamma%). A stable hierarchy emerged: Healthy(speech/semantics) >> SCZ(speech) >> SCZ(semantics), robust under equal-energy control and gain perturbations. Network dynamics coincided with single-node solutions, supporting interpretability. Pharmacological analogs showed bidirectional effects: reduced inhibition lowered γ\gamma, while reduced excitation increased γ\gamma, with no self-sustained oscillations. Findings indicate SCZ gamma deficits align more with shifts in E/I operating point and gain than input differences. This pipeline provides a testable, reusable mechanistic framework for speech-evoked gamma and a baseline for cross-population studies.

Keywords

Cite

@article{arxiv.2601.15032,
  title  = {Single-Node Wilson--Cowan Model Accounts for Speech-Evoked $\gamma$-Band Deficits in Schizophrenia},
  author = {Zhengdi Zhang and Yan Xu and Wenjun Xia},
  journal= {arXiv preprint arXiv:2601.15032},
  year   = {2026}
}