4 citations · 6 across the 4 of their papers we have counts for
4 papers
A posteriori error analysis for a coupled Stokes-poroelastic system with multiple compartments
Ivan Fumagalli, Nicola Parolini, Marco Verani
The discretization of fluid-poromechanics systems is typically highly demanding in terms of computational effort. This is particularly true for models of multiphysics flows in the…
Polytopal discontinuous Galerkin discretization of brain multiphysics flow dynamics
Ivan Fumagalli, Mattia Corti, Nicola Parolini +1
A comprehensive mathematical model of the multiphysics flow of blood and Cerebrospinal Fluid (CSF) in the brain can be expressed as the coupling of a poromechanics system and Stoke…
Modeling isovolumetric phases in cardiac flows by an Augmented Resistive Immersed Implicit Surface Method
Alberto Zingaro, Michele Bucelli, Ivan Fumagalli +2
A major challenge in the computational fluid dynamics modeling of the heart function is the simulation of isovolumetric phases when the hemodynamics problem is driven by a prescrib…
A mathematical model that integrates cardiac electrophysiology, mechanics and fluid dynamics: application to the human left heart
Michele Bucelli, Alberto Zingaro, Pasquale Claudio Africa +3
We propose a mathematical and numerical model for the simulation of the heart function that couples cardiac electrophysiology, active and passive mechanics and hemodynamics, and in…