15 citations · 22 across the 11 of their papers we have counts for
6 papers · 1 filter
An in-silico approach to meniscus tissue regeneration: Modeling, numerical simulation, and experimental analysis
Elise Grosjean, Alex Keilmann, Henry Jäger +10
We develop a model the dynamics of human mesenchymal stem cells (hMSCs) and chondrocytes evolving in a nonwoven polyethylene terephtalate (PET) scaffold impregnated with hyaluron a…
Multiphase modelling of glioma pseudopalisading under acidosis
Pawan Kumar, Christina Surulescu, Anna Zhigun
We propose a multiphase modeling approach to describe glioma pseudopalisade patterning under the influence of acidosis. The phases considered at the model onset are glioma, normal…
Multiscale modeling of glioma invasion: from receptor binding to flux-limited macroscopic PDEs
Anne Dietrich, Niklas Kolbe, Nikolaos Sfakianakis +1
We propose a novel approach to modeling cell migration in an anisotropic environment with biochemical heterogeneity and interspecies interactions, using as a paradigm glioma invasi…
A flux-limited model for glioma patterning with hypoxia-induced angiogenesis
Pawan Kumar, Christina Surulescu
We propose a model for glioma patterns in a microlocal tumor environment under the influence of acidity, angiogenesis, and tissue anisotropy. The bottom-up model deduction eventual…
Mathematical modeling of glioma invasion: acid- and vasculature mediated go-or-grow dichotomy and the influence of tissue anisotropy
Martina Conte, Christina Surulescu
Starting from kinetic transport equations and subcellular dynamics we deduce a multiscale model for glioma invasion relying on the go-or-grow dichotomy and the influence of vascula…
Modeling glioma invasion with anisotropy- and hypoxia-triggered motility enhancement: from subcellular dynamics to macroscopic PDEs with multiple taxis
G. Corbin, C. Engwer, A. Klar +4
We deduce a model for glioma invasion making use of DTI data and accounting for the dynamics of brain tissue being actively degraded by tumor cells via excessive acidity production…