AbstractWe propose a class of nonlinear integro-differential equations that at the mesoscopic level models the competition between a tumor and the immune system. The model describes the evolution of a distribution function of the microscopic parameter referred to as activity of cells. The idea is somehow similar to the Enskog theory in kinetic theory. By averaging with respect to the parameter, the mesoscopic class of models reduces to the general class of macroscopic models introduced by A. d’Onofrio that may assess the effect of delays in stimulation of the immune system by tumor cells. The existence and uniqueness theory is developed
This paper deals with a critical analysis and some developments related to the mathema-tical literat...
This paper deals with a critical analysis and some developments related to the mathema- tical liter...
This paper deals with the modeling of interactions between the immune system and cancer cells, in th...
AbstractWe propose a class of nonlinear integro-differential equations that at the mesoscopic level ...
AbstractThis work deals with the qualitative analysis of a nonlinear integro-differential model of i...
This work deals with the qualitative analysis of a nonlinear integro-differential model of immune co...
Abstract-Starting at a kinetic level from the equations for the evolution of dominance in population...
The competitive interaction between the Immune System and tumours is very complex, being non-linear...
This paper deals with a kinetic modelling of the cellular dynamics of tumors interacting with an act...
Mathematical and computational models are increasingly used in this century to help modeling of livi...
A mathematical model, based on a mesoscopic approach, describing the competition between tumor cells...
AbstractThis paper deals with the modelling of genetic mutations, which occur in almost all cells of...
AbstractA bifurcation analysis is developed for the initial value problem for a nonlinear system of ...
A kinetic model describing the competition between tumor cells and immune system is investigated. T...
This paper deals with a review and critical analysis on the mathematical kinetic theory of active pa...
This paper deals with a critical analysis and some developments related to the mathema-tical literat...
This paper deals with a critical analysis and some developments related to the mathema- tical liter...
This paper deals with the modeling of interactions between the immune system and cancer cells, in th...
AbstractWe propose a class of nonlinear integro-differential equations that at the mesoscopic level ...
AbstractThis work deals with the qualitative analysis of a nonlinear integro-differential model of i...
This work deals with the qualitative analysis of a nonlinear integro-differential model of immune co...
Abstract-Starting at a kinetic level from the equations for the evolution of dominance in population...
The competitive interaction between the Immune System and tumours is very complex, being non-linear...
This paper deals with a kinetic modelling of the cellular dynamics of tumors interacting with an act...
Mathematical and computational models are increasingly used in this century to help modeling of livi...
A mathematical model, based on a mesoscopic approach, describing the competition between tumor cells...
AbstractThis paper deals with the modelling of genetic mutations, which occur in almost all cells of...
AbstractA bifurcation analysis is developed for the initial value problem for a nonlinear system of ...
A kinetic model describing the competition between tumor cells and immune system is investigated. T...
This paper deals with a review and critical analysis on the mathematical kinetic theory of active pa...
This paper deals with a critical analysis and some developments related to the mathema-tical literat...
This paper deals with a critical analysis and some developments related to the mathema- tical liter...
This paper deals with the modeling of interactions between the immune system and cancer cells, in th...