Sep 22 – 24, 2026
SISSA
Europe/Rome timezone

A Whole-Brain Dynamical Framework Linking Resting-State Activity to TMS-Evoked Responses

Sep 22, 2026, 3:30 PM
2h 30m
Aula Magna “Paolo Budinich” (SISSA)

Aula Magna “Paolo Budinich”

SISSA

Via Bonomea 265, Trieste

Speaker

Michele Allegra (Department of Physics and Astronomy and Padova Neuroscience Center, Università di Padova)

Description

A major challenge in systems neuroscience is understanding how external perturbations interact with ongoing brain activity. Transcranial magnetic stimulation (TMS), increasingly used in both basic and clinical neuroscience and often combined with electroencephalography (EEG), provides a unique opportunity to probe this interaction. However, how intrinsic dynamics constrain the propagation of TMS-evoked activity remains poorly understood. In particular, effective connectivity (EC)—capturing directed, state-dependent interactions between brain regions—is thought to critically shape perturbational spread, yet remains difficult to estimate at the whole-brain EEG level. Here we introduce an analytically tractable, generative whole-brain model that links spontaneous EEG activity to cortical responses under perturbation. By deriving a closed-form expression for the model′s cross-spectral density, we directly fit empirical resting-state EEG spectra and infer biophysically interpretable local dynamical parameters without time-domain simulations. We then estimate stimulation-site-specific EC using only a small fraction of the TMS-EEG trials. The resulting model accurately predicts the spatiotemporal structure of TMS-evoked potentials (TEPs) in unseen trials. Moreover, even without subject-specific refitting, group-level EC templates capture canonical site-specific propagation motifs underlying single-subject early TMS responses. Together, our results establish an analytical framework for individualized whole-brain modeling of TMS-EEG with potential applicability to model-based neuromodulation.

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Authors

Andrea Veronese (School of Advanced Studies, Università di Camerino) Davide Momi (Department of Psychiatry and Human Behavior, UCI School of Medicine, Irvine, CA, United States of America.) Simone Sarasso (Department of Biomedical and Clinical Sciences, Università di Milano) Maurizio Corbetta (Department of Neuroscience and Padova Neuroscience Center, Università di Padova) Samir Simon Suweis (Department of Physics and Astronomy and Padova Neuroscience Center, Università di Padova) Michele Allegra (Department of Physics and Astronomy and Padova Neuroscience Center, Università di Padova)

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