We consider a dynamical model of cancer growth including three interacting cell populations of tumor cells, healthy host cells and immune effector cells. For certain parameter choice, the dynamical system displays chaotic motion and by decreasing the response of the immune system to the tumor cells, a boundary crisis leading to transient chaotic dynamics is observed. This means that the system behaves chaotically for a finite amount of time until the unavoidable extinction of the healthy and immune cell populations occurs. Our main goal here is to apply a control method to avoid extinction. For that purpose, we apply the partial control method, which aims to control transient chaotic dynamics in the presence of external disturbances. As a r...
The immune system is a highly regulated network of specialized cells and molecules: any immune respo...
We study a five-compartment mathematical model originally proposed by Kuznetsov et al. (1994) to inv...
Interactive dynamics between effector-tumor-normal cells in a mathematical model related to the grow...
Cancer is a significant medical and societal problem. This reality arises from the fact that an expo...
In this article we provide homotopy solutions of a cancer nonlinear model describing the dynamics of...
International audienceObjective: Modeling and analysis of cell population dynamics enhance our under...
Despite mounting evidence that oncolytic viruses can be effective in treating cancer, understanding ...
Despite mounting evidence that oncolytic viruses can be effective in treating cancer, understanding ...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
Cancer growth and decay can be modeled as a system of chaotic nonlinear differential equations. The ...
Cancer is a complex disease and thus is complicated to model. However, simple mod-els that describe ...
In this paper, we have proposed and analyzed a nonlinear mathematical model to study the interaction...
Cancer is a complex disease and thus is complicated to model. However, simple models that describe t...
A simple prey-predator-type model for the growth of tumor with discrete time delay in the immune sys...
Cancer is a complex disease and thus is complicated to model. However, simple models that describe t...
The immune system is a highly regulated network of specialized cells and molecules: any immune respo...
We study a five-compartment mathematical model originally proposed by Kuznetsov et al. (1994) to inv...
Interactive dynamics between effector-tumor-normal cells in a mathematical model related to the grow...
Cancer is a significant medical and societal problem. This reality arises from the fact that an expo...
In this article we provide homotopy solutions of a cancer nonlinear model describing the dynamics of...
International audienceObjective: Modeling and analysis of cell population dynamics enhance our under...
Despite mounting evidence that oncolytic viruses can be effective in treating cancer, understanding ...
Despite mounting evidence that oncolytic viruses can be effective in treating cancer, understanding ...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
Cancer growth and decay can be modeled as a system of chaotic nonlinear differential equations. The ...
Cancer is a complex disease and thus is complicated to model. However, simple mod-els that describe ...
In this paper, we have proposed and analyzed a nonlinear mathematical model to study the interaction...
Cancer is a complex disease and thus is complicated to model. However, simple models that describe t...
A simple prey-predator-type model for the growth of tumor with discrete time delay in the immune sys...
Cancer is a complex disease and thus is complicated to model. However, simple models that describe t...
The immune system is a highly regulated network of specialized cells and molecules: any immune respo...
We study a five-compartment mathematical model originally proposed by Kuznetsov et al. (1994) to inv...
Interactive dynamics between effector-tumor-normal cells in a mathematical model related to the grow...