Mathematical and computational modeling of head and neck cancer for personalized therapy
José A. Rodrigues
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Source: Crossref
Published: Sep 19, 2026
DOI: 10.1007/s40314-026-03860-9
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Abstract We present a coupled mathematical model for tumor progression and treatment-induced tissue remodeling in head and neck cancer. The framework links a reaction–diffusion equation for tumor cell density with finite-strain growth mechanics through a multiplicative decomposition of the deformation gradient. Radiation therapy enters the model as both a cytotoxic term in the kinetic equation and a remodeling stimulus altering the growth parameter. We develop the model systematically, provide nondimensionalisation, offer formal analysis including linear stability, and propose a staggered finite element scheme for numerical simulation. Numerical experiments on stylized head–neck geometries demonstrate qualitative behaviour consistent with clinical expectations and illustrate candidate model-derived indicators that may warrant future investigation as imaging biomarkers following patient-specific validation.
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