Pages that link to "Item:Q2360083"
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The following pages link to A multiscale modeling approach to glioma invasion with therapy (Q2360083):
Displaying 30 items.
- A hybrid model for cell proliferation and migration in glioblastoma (Q378946) (← links)
- Multi-scale, multi-resolution brain cancer modeling (Q1013136) (← links)
- Simulating PDGF-driven glioma growth and invasion in an anatomically accurate brain domain (Q1648999) (← links)
- Treatment of glioma with virotherapy and TNF-\(\alpha\) inhibitors: analysis as a dynamical system (Q1678324) (← links)
- Partial differential inclusions of transport type with state constraints (Q1733208) (← links)
- Multiscale modeling of glioma pseudopalisades: contributions from the tumor microenvironment (Q2022093) (← links)
- Modeling multiple taxis: tumor invasion with phenotypic heterogeneity, haptotaxis, and unilateral interspecies repellence (Q2026618) (← links)
- Simulating the behaviour of glioblastoma multiforme based on patient MRI during treatments (Q2133942) (← links)
- Multiphase modelling of glioma pseudopalisading under acidosis (Q2167635) (← links)
- Viability in a non-local population model structured by size and spatial position (Q2195170) (← links)
- Estimating the extent of glioblastoma invasion. Approximate stationalization of anisotropic advection-diffusion-reaction equations in the context of glioblastoma invasion (Q2223257) (← links)
- Mathematical modeling of glioma invasion: acid- and vasculature mediated go-or-grow dichotomy and the influence of tissue anisotropy (Q2243281) (← links)
- Computer implementation of a new therapeutic model for GBM tumor (Q2262515) (← links)
- Glioma invasion and its interplay with nervous tissue and therapy: a multiscale model (Q2288486) (← links)
- Multiscale cancer modeling: In the line of fast simulation and chemotherapy (Q2390175) (← links)
- Patient-specific mathematical neuro-oncology: using a simple proliferation and invasion tumor model to inform clinical practice (Q2516459) (← links)
- Tracking glioblastoma progression after initial resection with minimal reaction-diffusion models (Q2686700) (← links)
- Patient specific multiscale modelling of glioma growth (Q2920439) (← links)
- Density-dependent quiescence in glioma invasion: instability in a simple reaction–diffusion model for the migration/proliferation dichotomy (Q3304445) (← links)
- Nonlinear waves in a simple model of high-grade glioma (Q4597664) (← links)
- Higher-order models for glioma invasion: From a two-scale description to effective equations for mass density and momentum (Q4630559) (← links)
- Extreme protraction for low-grade gliomas: theoretical proof of concept of a novel therapeutical strategy (Q4687152) (← links)
- A Novel Derivation of Rigorous Macroscopic Limits from a Micro-Meso Description of Signal-Triggered Cell Migration in Fibrous Environments (Q5024355) (← links)
- Does indirectness of signal production reduce the explosion-supporting potential in chemotaxis–haptotaxis systems? Global classical solvability in a class of models for cancer invasion (and more) (Q5056753) (← links)
- Multiscale Modeling of Glioma Invasion: From Receptor Binding to Flux-Limited Macroscopic PDEs (Q5099847) (← links)
- Modeling glioma invasion with anisotropy- and hypoxia-triggered motility enhancement: From subcellular dynamics to macroscopic PDEs with multiple taxis (Q5164207) (← links)
- A mathematical model of dynamic glioma–host interactions: receptor-mediated invasion and local proteolysis (Q5475462) (← links)
- Data driven modeling of pseudopalisade pattern formation (Q6158566) (← links)
- Mathematical modeling of glioma invasion and therapy approaches via kinetic theory of active particles (Q6175729) (← links)
- Modelling and simulation of anisotropic growth in brain tumours through poroelasticity: a study of ventricular compression and therapeutic protocols (Q6661933) (← links)