Spatial avascular growth of tumor in a homogeneous environment
From MaRDI portal
Publication:2013437
DOI10.1016/j.jtbi.2016.12.011zbMath1368.92090OpenAlexW2565315155WikidataQ89283240 ScholiaQ89283240MaRDI QIDQ2013437
Fabrice Denis, Louise Viger, Christophe Letellier, Clément Draghi, Thibault Ménard
Publication date: 18 August 2017
Published in: Journal of Theoretical Biology (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jtbi.2016.12.011
Related Items
A Cancer Model for the Angiogenic Switch and Immunotherapy: Tumor Eradication in Analysis of Ultimate Dynamics ⋮ Parameter identification of a model for prostate cancer treated by intermittent therapy
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Optimal control in a model of dendritic cell transfection cancer immunotherapy
- A cancer model for the angiogenic switch
- Mathematical model of cancer chemotherapy. Periodic schedules of phase- specific cytotoxic-agent administration increasing the selectivity of therapy
- The dynamics of an optimally controlled tumor model: A case study
- Vascular remodelling of an arterio-venous blood vessel network during solid tumour growth
- What can be learned from a chaotic cancer model?
- Modeling anti-tumor Th1 and Th2 immunity in the rejection of melanoma
- Emergent vascular network inhomogeneities and resulting blood flow patterns in a growing tumor
- Evolution of uncontrolled proliferation and the angiogenic switch in cancer
- A cellular automaton model for tumour growth in inhomogeneous environment
- Mixed immunotherapy and chemotherapy of tumors: modeling, applications and biological interpretations
- Cancer immunotherapy, mathematical modeling and optimal control
- Tumour-host dynamics under radiotherapy
- A mathematical model of combined \textit{bacillus Calmette-Guerin} (BCG) and interleukin (IL)-2 immunotherapy of superficial bladder cancer
- Interactions between the immune system and cancer: A brief review of non-spatial mathematical models
- The effect of the 2-D Laplacian operator approximation on the performance of finite-difference time-domain schemes for Maxwell's equations
- Mathematical modelling of the influence of blood rheological properties upon adaptative tu\-mour-induced angiogenesis
- Cancer self remission and tumor stability -- a stochastic approach
- A Mathematical Tumor Model with Immune Resistance and Drug Therapy: An Optimal Control Approach
- ADVECTION-DIFFUSION MODELS FOR SOLID TUMOUR EVOLUTION IN VIVO AND RELATED FREE BOUNDARY PROBLEM
- CHAOS IN A THREE-DIMENSIONAL CANCER MODEL
- Stencils with isotropic discretization error for differential operators
- A hybrid mathematical model of solid tumour invasion: the importance of cell adhesion