A Positivity-Preserving Finite Element Framework for Accurate Dose Computation in Proton Therapy
Numerical Analysis
2025-06-03 v1 Numerical Analysis
Medical Physics
Abstract
We present a stabilised finite element method for modelling proton transport in tissue, incorporating both inelastic energy loss and elastic angular scattering. A key innovation is a positivity-preserving formulation that guarantees non-negative fluence and dose, even on coarse meshes. This enables reliable computation of clinically relevant quantities for treatment planning. We derive a priori error estimates demonstrating optimal convergence rates and validate the method through numerical benchmarks. The proposed framework provides a robust, accurate and efficient tool for advancing proton beam therapy.
Keywords
Cite
@article{arxiv.2506.01105,
title = {A Positivity-Preserving Finite Element Framework for Accurate Dose Computation in Proton Therapy},
author = {Ben S. Ashby and Abdalaziz Hamdan and Tristan Pryer},
journal= {arXiv preprint arXiv:2506.01105},
year = {2025}
}
Comments
21 pages, 11 figures