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Updated: Jun 30, 2026

A Computational Modeling Approach to Investigate the Influence of Hyperthermia on the Tumor Microenvironment
Published on: December 1, 2023
Multiscale modeling of fluid transport in tumors
S Jonathan Chapman1, Rebecca J Shipley, Rossa Jawad
1Mathematical Institute, University of Oxford, 24-29 St Giles', Oxford OX1 3LB, UK. chapman@maths.ox.ac.uk
Abstract:
A model for fluid flow through the leaky neovasculature and porous interstitium of a solid tumor is developed. A network of isolated capillaries is analyzed in the limit of small capillary radius, and analytical expressions for the hydraulic conductivities and fractional leakage coefficients derived. This model is then homogenized to give a continuum description in terms of the vascular density. The resulting equations comprise a double porous medium with coupled Darcy flow through the interstitium and vasculature.
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