12–17 Jul 2026
University of Graz
Europe/Vienna timezone

A coupled fluid-dynamics-heat transfer model for 3D simulations of the aqueous humor flow in the human eye

MS84-05
16 Jul 2026, 17:00
20m
01.22 - HS (University of Graz)

01.22 - HS

University of Graz

90
Minisymposium Talk Miscellaneous Mathematical and Computational Ophthalmology

Speaker

Marcela Szopos (Université Paris Cité)

Description

Understanding the behavior of the human eye is challenging due to the complex interactions between various physical phenomena, such as heat transfer, fluid dynamics, and tissue deformation. Although medical data can offer valuable insights into ocular physiopathology, the available information can be scarce and noisy. Moreover, in experimental studies, multiple factors come into play and it is difficult to isolate the contributions of individual mechanisms. Therefore, developing a robust and accurate model for ocular applications can enhance our understanding of this complex system, by integrating governing mechanisms and data variability.

This talk presents our ongoing efforts in this direction, focusing on the thermo-fluid dynamics governing aqueous humor flow and its coupling with heat transfer throughout the eyeball ~\cite{SCPS_2026}. Our methodology involves developing a comprehensive mathematical and computational model based on the finite element method, rigorously validated against experimental data and numerical studies. To facilitate real-time feedback, we derived a reliable reduced-order model using the certified reduced basis method. We performed forward uncertainty quantification studies with the reduced model, utilizing experimental based stochastic inputs, and conducted global sensitivity analysis to address variability and noise ~\cite{SPS_2024}. We will illustrate these developments, discuss their applications, and address the remaining challenges.

Bibliography

@article{SCPS_2026,
title={Mathematical Modeling and Simulation of Coupled Aqueous Humor Flow and Temperature Distribution in a Realistic 3D Human Eye Geometry},
volume={42},
ISSN={2040-7939, 2040-7947},
url={https://onlinelibrary.wiley.com/doi/10.1002/cnm.70132},
DOI={10.1002/cnm.70132},
number={1},
journal={International Journal for Numerical Methods in Biomedical Engineering},
author={Saigre, Thomas and Chabannes, Vincent and Prud’homme, Christophe and Szopos, Marcela}, year={2026},
month=jan, pages={e70132},
language={en} }

@article{SPS_2024,
title={Model order reduction and sensitivity analysis for complex heat transfer simulations inside the human eyeball},
volume={40},
ISSN={2040-7939, 2040-7947},
url={https://onlinelibrary.wiley.com/doi/10.1002/cnm.3864},
DOI={10.1002/cnm.3864},
number={11},
journal={International Journal for Numerical Methods in Biomedical Engineering},
author={Saigre, Thomas and Prud’homme, Christophe and Szopos, Marcela},
year={2024},
month=nov,
pages={e3864},
language={en} }

Author

Marcela Szopos (Université Paris Cité)

Co-authors

Thomas Saigre (Inria) Christophe Prud'homme (Université de Strasbourg) Vincent Chabannes (Université de Strasbourg)

Presentation materials

There are no materials yet.