AbstractAn existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chemotherapy is extended to simulate the response to treatment of a tumor growing in vivo. The tumor is assumed to undergo logistic growth in the absence of therapy, and treatment is administered periodically rather than continuously. Necessary and sufficient conditions for the global stability of the cancer-free equilibrium are derived and conditions under which the system evolves to periodic solutions are determined
AbstractIn this paper, a mathematical model for tumor growth with time delay in proliferation under ...
Cancer is the disease caused by disordered hormone so that it causes the lumps to grow abnormally o...
A simplified two-compartment model for cell-specific chemotherapy is analysed by reformulating the g...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
AbstractA logistic differential equation with a time-varying periodic parameter is used to model the...
A logistic differential equation with a time-varying periodic parameter is used to model the growth ...
In this paper, the presentation will be on existing model called integro-differential equation of tu...
This study addresses a modified mathematical model of tumor growth with targeted chemotherapy consis...
A simple mathematical model, developed to simulate the chemotherapy response to tumour growth with s...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
AbstractA logistic model of periodic chemotherapy is developed that includes drug resistance. Criter...
A mathematical model is used to discuss the effects of cycle-specific chemotherapy. The model includ...
A time-delayed mathematical model for tumor growth with the effect of periodic therapy is studied. T...
This is a mathematical study about tumor growth from a different perspective, with the aim of predic...
AbstractIn this paper, a mathematical model for tumor growth with time delay in proliferation under ...
Cancer is the disease caused by disordered hormone so that it causes the lumps to grow abnormally o...
A simplified two-compartment model for cell-specific chemotherapy is analysed by reformulating the g...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
An existing model of tumor growth that accounts for cell cycle arrest and cell death induced by chem...
AbstractA logistic differential equation with a time-varying periodic parameter is used to model the...
A logistic differential equation with a time-varying periodic parameter is used to model the growth ...
In this paper, the presentation will be on existing model called integro-differential equation of tu...
This study addresses a modified mathematical model of tumor growth with targeted chemotherapy consis...
A simple mathematical model, developed to simulate the chemotherapy response to tumour growth with s...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
AbstractA logistic model of periodic chemotherapy is developed that includes drug resistance. Criter...
A mathematical model is used to discuss the effects of cycle-specific chemotherapy. The model includ...
A time-delayed mathematical model for tumor growth with the effect of periodic therapy is studied. T...
This is a mathematical study about tumor growth from a different perspective, with the aim of predic...
AbstractIn this paper, a mathematical model for tumor growth with time delay in proliferation under ...
Cancer is the disease caused by disordered hormone so that it causes the lumps to grow abnormally o...
A simplified two-compartment model for cell-specific chemotherapy is analysed by reformulating the g...