Spatiotemporal dynamics of immunogenic tumors
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Publication:4984947
DOI10.1142/S1793524520500448zbMath1464.35377MaRDI QIDQ4984947
Publication date: 21 April 2021
Published in: International Journal of Biomathematics (Search for Journal in Brave)
PDEs in connection with biology, chemistry and other natural sciences (35Q92) Developmental biology, pattern formation (92C15) General biology and biomathematics (92B05) Pattern formations in context of PDEs (35B36)
Related Items (2)
A direct RBF-PU method for simulating the infiltration of cytotoxic T-lymphocytes into the tumor microenvironment ⋮ SPATIOTEMPORAL DYNAMICAL ANALYSIS OF A PREDATOR–PREY SYSTEM WITH FEAR AND GROUP DEFENSE IN PREY
Cites Work
- Stability and bifurcation analysis of delay induced tumor immune interaction model
- Mathematical modeling of glioma therapy using oncolytic viruses
- Analysis of the Hopf bifurcation for the family of angiogenesis models
- A mathematical model quantifies proliferation and motility effects of TGF-\(\beta\) on cancer cells
- Mathematical modelling of liposomal drug release to tumour
- Mathematical analysis of a tumour-immune interaction model: a moving boundary problem
- Model for acid-mediated tumour invasion with chemotherapy intervention. II: Spatially heterogeneous populations
- Kinetics of cell-mediated cytotoxicity: Stochastic and deterministic multistage models
- Approximate Michaelis-Menten kinetics displayed in a stochastic model of cell-mediated cytotoxicity
- Foundations of the use of an enzyme-kinetic analogy in cell-mediated cytotoxicity
- On the kinectics and optimal specificity of cytotoxic reactions mediated by T-lymphocyte clones
- Nonlinear dynamics of immunogenic tumors: Parameter estimation and global bifurcation analysis
- Mathematical modelling of the use of macrophages as vehicles for drug delivery to hypoxic tumour sites
- Multiscale modelling of cancer response to oncolytic viral therapy
- Bounded immune response in immunotherapy described by the deterministic delay Kirschner-Panetta model
- Quantifying the role of immunotherapeutic drug T11 target structure in progression of malignant gliomas: mathematical modeling and dynamical perspective
- Macrophage-based anti-cancer therapy: Modelling different modes of tumour targeting
- Interactions between the immune system and cancer: A brief review of non-spatial mathematical models
- A general reaction-diffusion model of acidity in cancer invasion
- Mathematical Modelling of Tumour Dormancy
- Mathematical modelling of the spatio-temporal response of cytotoxic T-lymphocytes to a solid tumour
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