In this study, we present a Lotka-Volterra predator-prey like model for the interaction dynamics of tumor-immune system. The model consists of system of differential equations with piecewise constant arguments and based on the model of tumor growth constructed by Sarkar and Banerjee. The solutions of differential equations with piecewise constant arguments leads to system of difference equations. Sufficient conditions are obtained for the local and global asymptotic stability of a positive equilibrium point of the discrete system by using Schur-Cohn criterion and a Lyapunov function. In addition, we investigate periodic solutions of discrete system through Neimark-Sacker bifurcation and obtain a stable limit cycle which implies that t...
Abstract In this study, we discuss a cancer model considering discrete time-delay in tumor-immune in...
AbstractThis work deals with the qualitative analysis of a nonlinear integro-differential model of i...
This is a mathematical study about tumor growth from a different perspective, with the aim of predic...
In this study, we present a Lotka-Volterra predator-prey like model for the interaction dynamics of ...
The present study deals with the analysis of a Lotka-Volterra model describing competition between t...
The present study deals with the analysis of a Lotka-Volterra model describing competition between t...
In this paper, we propose and analyze a Lotka–Volterra competition like model which consistsof...
This paper deals with a kinetic modelling of the cellular dynamics of tumors interacting with an act...
This study reports on a phase-space analysis of a mathematical model of tumor growth with the intera...
Immune system plays a vital role in controlling the tumor growth. Therefore, this paper proposes a n...
This work deals with the qualitative analysis of a nonlinear integro-differential model of immune co...
Bu çalışmada, tümör-bağışıklık sistemi etkileşimini tanımlamak için tam değer fonksiyonlu diferansiy...
A mathematical model, based on a mesoscopic approach, describing the competition between tumor cells...
In this study, the mathematical model examined the dynamics between pathogen and specific immune sys...
A kinetic model describing the competition between tumor cells and immune system is investigated. T...
Abstract In this study, we discuss a cancer model considering discrete time-delay in tumor-immune in...
AbstractThis work deals with the qualitative analysis of a nonlinear integro-differential model of i...
This is a mathematical study about tumor growth from a different perspective, with the aim of predic...
In this study, we present a Lotka-Volterra predator-prey like model for the interaction dynamics of ...
The present study deals with the analysis of a Lotka-Volterra model describing competition between t...
The present study deals with the analysis of a Lotka-Volterra model describing competition between t...
In this paper, we propose and analyze a Lotka–Volterra competition like model which consistsof...
This paper deals with a kinetic modelling of the cellular dynamics of tumors interacting with an act...
This study reports on a phase-space analysis of a mathematical model of tumor growth with the intera...
Immune system plays a vital role in controlling the tumor growth. Therefore, this paper proposes a n...
This work deals with the qualitative analysis of a nonlinear integro-differential model of immune co...
Bu çalışmada, tümör-bağışıklık sistemi etkileşimini tanımlamak için tam değer fonksiyonlu diferansiy...
A mathematical model, based on a mesoscopic approach, describing the competition between tumor cells...
In this study, the mathematical model examined the dynamics between pathogen and specific immune sys...
A kinetic model describing the competition between tumor cells and immune system is investigated. T...
Abstract In this study, we discuss a cancer model considering discrete time-delay in tumor-immune in...
AbstractThis work deals with the qualitative analysis of a nonlinear integro-differential model of i...
This is a mathematical study about tumor growth from a different perspective, with the aim of predic...