In this work, we present a compact surrogate circuit for electro-quasi-static (EQS) head modeling. A threeshell geometry (brain, skull, scalp) is considered, and each layer is modeled through radial and tangential pathways, implemented as RC branches. Frequency-dependent tissue conductivity and permittivity are mapped into dispersive resistive and capacitive elements. The model is validated against a semi-analytical spherical-harmonics reference solution over multiple geometrical configurations and operating frequencies, demonstrating good agreement. Neglecting dispersion and capacitive pathways can lead to an overestimation of scalp potentials over the considered frequency range, highlighting the need for dispersive RC circuit modeling.

A Lumped-Element Electrical Model of the Human Head for Brain-Oriented Applications / Faccia, A., Citraro, E., Andriulli, F.P.. - ELETTRONICO. - (2026), pp. 768-771. (2026 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting, AP-S/USNC-URSI 2026 Huntington Place Convention Center, Detroit (USA) 12-17 July 2026) [10.1109/ap-s/usnc-ursi60190.2026.11675316].

A Lumped-Element Electrical Model of the Human Head for Brain-Oriented Applications

Faccia, Angelo;Citraro, Ermanno;Andriulli, Francesco P.
2026

Abstract

In this work, we present a compact surrogate circuit for electro-quasi-static (EQS) head modeling. A threeshell geometry (brain, skull, scalp) is considered, and each layer is modeled through radial and tangential pathways, implemented as RC branches. Frequency-dependent tissue conductivity and permittivity are mapped into dispersive resistive and capacitive elements. The model is validated against a semi-analytical spherical-harmonics reference solution over multiple geometrical configurations and operating frequencies, demonstrating good agreement. Neglecting dispersion and capacitive pathways can lead to an overestimation of scalp potentials over the considered frequency range, highlighting the need for dispersive RC circuit modeling.
2026
979-8-3315-8412-2
979-8-3315-8413-9
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/3016321
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