Pages that link to "Item:Q1410904"
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The following pages link to The modelling of the immune competition by generalized kinetic (Boltzmann) models: Review and research perspectives (Q1410904):
Displaying 30 items.
- Studying the growth kinetics of untreated clinical tumors by using an advanced discrete simulation model (Q409841) (← links)
- B7-H1 and a mathematical model for cytotoxic T cell and tumor cell interaction (Q417323) (← links)
- Mathematical models for immunology: current state of the art and future research directions (Q518216) (← links)
- A phenomenological approach to the dynamics of activation and clonal expansion of \(T\) cells (Q534843) (← links)
- Trajectory analysis of nonlinear kinetic models of population dynamics of several species (Q734482) (← links)
- A mathematical model of cellular immune response to leukemia (Q814203) (← links)
- Modelling the stochastic single particle dynamics of relativistic fermions and bosons using nonlinear drift-diffusion equations (Q815449) (← links)
- On the discrete kinetic theory for active particles. Modelling the immune competition (Q883752) (← links)
- Oscillations and bistability in the dynamics of cytotoxic reactions mediated by the response of immune cells to solid tumours (Q955510) (← links)
- Modelling homeorhesis by ordinary differential equations (Q1029191) (← links)
- Critical analysis and perspectives on kinetic (cellular) theory of immune competition (Q1609376) (← links)
- On immunotherapies and cancer vaccination protocols: a mathematical modelling approach (Q1624565) (← links)
- Numerical algorithm for the growth of human tumor cells and their responses to therapy (Q1644050) (← links)
- Modeling anti-tumor Th1 and Th2 immunity in the rejection of melanoma (Q1720105) (← links)
- Kinetic (cellular) models of cell progression and competition with the immune system (Q1881497) (← links)
- A direct RBF-PU method for simulating the infiltration of cytotoxic T-lymphocytes into the tumor microenvironment (Q2160926) (← links)
- A contribution to the mathematical modeling of immune-cancer competition (Q2274609) (← links)
- A continuous-time Markov chain modeling cancer-immune system interactions (Q2274613) (← links)
- An algorithm for partial functional differential equations modeling tumor growth (Q2423037) (← links)
- On the kinetic theory for active particles: a model for tumor-immune system competition (Q2427113) (← links)
- Modelling complex systems in applied sciences; methods and tools of the mathematical kinetic theory for active particles (Q2473204) (← links)
- Stochastic mechanics in the context of the properties of living systems (Q2476111) (← links)
- The competitive dynamics between tumor cells, a replication-competent virus and an immune response (Q2487124) (← links)
- (Q3012220) (← links)
- The dynamics of war between benign cells, malignant cells, and killer agents (Q3595295) (← links)
- MATHEMATICAL TOPICS ON THE MODELLING COMPLEX MULTICELLULAR SYSTEMS AND TUMOR IMMUNE CELLS COMPETITION (Q4659522) (← links)
- A Fast Parallel Algorithm for Delay Partial Differential Equations Modeling the Cell Cycle in Cell Lines Derived from Human Tumors (Q5259818) (← links)
- FROM THE MATHEMATICAL KINETIC THEORY TO MODELLING COMPLEX SYSTEMS IN APPLIED SCIENCES (Q5312107) (← links)
- FROM DISCRETE KINETIC AND STOCHASTIC GAME THEORY TO MODELLING COMPLEX SYSTEMS IN APPLIED SCIENCES (Q5315612) (← links)
- Mathematical models of therapeutical actions related to tumour and immune system competition (Q5717763) (← links)