The present paper introduces a tumor model with two time scales, the time t during which the tumor grows and the cycle time of individual cells. The model also includes the effects of gene mutations on the population density of the tumor cells. The model is formulated as a free boundary problem for a coupled system of elliptic, parabolic and hyperbolic equations within the tumor region, with nonlinear and nonlocal terms. Existence and uniqueness theorems are proved, and properties of the free boundary are established
AbstractWe consider a tumor model in which all cells are proliferating at a rate μ and their density...
AbstractIn this paper we investigate regularity of solutions to a free boundary problem modeling tum...
Abstract. We investigate the dynamics of a nonlinear model for tumor growth within a cellular medium...
Abstract. In this paper we study a free boundary problem modeling the growth of radially symmetric t...
AbstractThis paper deals with a mathematical model describing the cell cycle dynamics and chemotacti...
In this paper, we conduct a thorough mathematical analysis of a tumor growth model with treatments. ...
First published in Transactions of the American Mathematical Society in volume 357, issue 12, publis...
Nesta dissertação detalhamos a análise matemática feita no artigo de X. Chen, A. Friedman, A free bo...
A non-autonomous free boundary model for tumor growth is studied. The model consists of a nonlinear ...
We investigate a PDE-ODE system describing cancer cell invasion in a tissue network. The model is an...
We study a mathematical model for the growth of necrotic tumors with time delays in proliferation. B...
International audienceModels of tumor growth, now commonly used, present several levels of complexit...
In this paper, we consider a time-delayed free boundary problem with time dependent Robin boundary c...
In this paper a generalized model for the growth of avascular tumours is presented. The formulation ...
In order to model the evolution of a heterogeneous population of cancer stem cells and tumor cells, ...
AbstractWe consider a tumor model in which all cells are proliferating at a rate μ and their density...
AbstractIn this paper we investigate regularity of solutions to a free boundary problem modeling tum...
Abstract. We investigate the dynamics of a nonlinear model for tumor growth within a cellular medium...
Abstract. In this paper we study a free boundary problem modeling the growth of radially symmetric t...
AbstractThis paper deals with a mathematical model describing the cell cycle dynamics and chemotacti...
In this paper, we conduct a thorough mathematical analysis of a tumor growth model with treatments. ...
First published in Transactions of the American Mathematical Society in volume 357, issue 12, publis...
Nesta dissertação detalhamos a análise matemática feita no artigo de X. Chen, A. Friedman, A free bo...
A non-autonomous free boundary model for tumor growth is studied. The model consists of a nonlinear ...
We investigate a PDE-ODE system describing cancer cell invasion in a tissue network. The model is an...
We study a mathematical model for the growth of necrotic tumors with time delays in proliferation. B...
International audienceModels of tumor growth, now commonly used, present several levels of complexit...
In this paper, we consider a time-delayed free boundary problem with time dependent Robin boundary c...
In this paper a generalized model for the growth of avascular tumours is presented. The formulation ...
In order to model the evolution of a heterogeneous population of cancer stem cells and tumor cells, ...
AbstractWe consider a tumor model in which all cells are proliferating at a rate μ and their density...
AbstractIn this paper we investigate regularity of solutions to a free boundary problem modeling tum...
Abstract. We investigate the dynamics of a nonlinear model for tumor growth within a cellular medium...