A time-delayed mathematical model for tumor growth with the effect of periodic therapy is studied. The establishment of the model is based on the reaction-diffusion dynamics and mass conservation law and is considered with a time delay in cell proliferation process. Sufficient conditions for the global stability of tumor free equilibrium are given. We also prove that if external concentration of nutrients is large the tumor will not disappear and the conditions under which there exist periodic solutions to the model are also determined. Results are illustrated by computer simulations
This paper presents a model of tumour growth that describes the interactions between immune response...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
In this paper, we consider a time-delayed free boundary problem with time dependent Robin boundary c...
In this paper, the existence, uniqueness and exponential stability of almost periodic solutions for ...
We present a competition model of tumor growth that includes the immune system response and a cycle-...
Abstract In this study, we discuss a cancer model considering discrete time-delay in tumor-immune in...
AbstractIn this paper, a mathematical model for tumor growth with time delay in proliferation under ...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
AbstractIn this paper we study a free boundary problem modeling solid avascular tumor growth. The mo...
Abstract. The model analyzed in this paper is based on the unstructured model set forth by Gyllenber...
We consider a free boundary tumor growth model with a time delay in cell proliferation and study how...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
A simple model of avascular solid tumour dynamics is studied in the paper. The model is derived on t...
A simple prey-predator-type model for the growth of tumor with discrete time delay in the immune sys...
Although recent advances in oncology emphasized the role of microenvironment in tumor growth, the ro...
This paper presents a model of tumour growth that describes the interactions between immune response...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
In this paper, we consider a time-delayed free boundary problem with time dependent Robin boundary c...
In this paper, the existence, uniqueness and exponential stability of almost periodic solutions for ...
We present a competition model of tumor growth that includes the immune system response and a cycle-...
Abstract In this study, we discuss a cancer model considering discrete time-delay in tumor-immune in...
AbstractIn this paper, a mathematical model for tumor growth with time delay in proliferation under ...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
AbstractIn this paper we study a free boundary problem modeling solid avascular tumor growth. The mo...
Abstract. The model analyzed in this paper is based on the unstructured model set forth by Gyllenber...
We consider a free boundary tumor growth model with a time delay in cell proliferation and study how...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
A simple model of avascular solid tumour dynamics is studied in the paper. The model is derived on t...
A simple prey-predator-type model for the growth of tumor with discrete time delay in the immune sys...
Although recent advances in oncology emphasized the role of microenvironment in tumor growth, the ro...
This paper presents a model of tumour growth that describes the interactions between immune response...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
In this paper, we consider a time-delayed free boundary problem with time dependent Robin boundary c...