In this article a model for the evolution of a spherically symmetric, nonnecrotic tumor is presented. The effects of nutrients and inhibitors on the existence and stability of time-independent solutions are studied. With a single nutrient and no inhibitors present, the trivial solution, which corresponds to a state in which no tumor is present, persists for all parameter values, whereas the nontrivial solution, which corresponds to a tumor of finite size, exists for only a prescribed range of parameters, which corresponds to a balance between cell proliferation and cell death. Stability analysis, based on a two-timing method, suggests that, where it exists, the nontrivial solution is stable and the trivial solution unstable. Otherwise, the ...
Interactions between different tumors within the same organism have major clinical implications, esp...
Cancer is the disease caused by disordered hormone so that it causes the lumps to grow abnormally o...
In an environment that is neither static nor in equilibrium, but is dynamic and changing, the ki-net...
In this article a model for the evolution of a spherically symmetric, nonnecrotic tumor is presented...
We study a mathematical model for the growth of tumors with two free boundaries : the inner boundary...
A mathematical model is presented for the growth of a multicellular spheroid that comprises a centra...
The processes underpinning solid tumour growth involve the interactions between various healthy and ...
Solid tumors, whether in vitro or in vivo, are not an undifferentiated mass of cells. They include n...
We investigate avascular tumour growth as a two-phase process consisting of cells and liquid. Initi...
Tumor growth can be highly unpredictable and many factors may impact its development. Mathematical m...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
A new approach for modelling the spatio-temporal evolution of tumors is presented. To test its valid...
In this paper, a mathematical model is presented to describe the evolution of an avascular solid tum...
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 ...
Interactions between different tumors within the same organism have major clinical implications, esp...
Cancer is the disease caused by disordered hormone so that it causes the lumps to grow abnormally o...
In an environment that is neither static nor in equilibrium, but is dynamic and changing, the ki-net...
In this article a model for the evolution of a spherically symmetric, nonnecrotic tumor is presented...
We study a mathematical model for the growth of tumors with two free boundaries : the inner boundary...
A mathematical model is presented for the growth of a multicellular spheroid that comprises a centra...
The processes underpinning solid tumour growth involve the interactions between various healthy and ...
Solid tumors, whether in vitro or in vivo, are not an undifferentiated mass of cells. They include n...
We investigate avascular tumour growth as a two-phase process consisting of cells and liquid. Initi...
Tumor growth can be highly unpredictable and many factors may impact its development. Mathematical m...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
A new approach for modelling the spatio-temporal evolution of tumors is presented. To test its valid...
In this paper, a mathematical model is presented to describe the evolution of an avascular solid tum...
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 ...
Interactions between different tumors within the same organism have major clinical implications, esp...
Cancer is the disease caused by disordered hormone so that it causes the lumps to grow abnormally o...
In an environment that is neither static nor in equilibrium, but is dynamic and changing, the ki-net...