<p>A fully adaptive non-linear full multigrid (FMG) algorithm is implemented to computationally simulate a model of multispecies desmoplastic tumor growth in three spatial dimensions. The algorithm solves a thermodynamic mixture model employing a diffuse interface approach with Cahn-Hilliard-type fourth-order equations that are coupled, non-linear, and numerically stiff. The tumor model includes extracellular matrix (ECM) as a major component with elastic energy contribution in its chemical potential term. Blood and lymphatic vasculatures are simulated via continuum representations. The model employs advection-reaction-diffusion partial differential equations (PDEs) for the cell, ECM, and vascular components, and reaction-diffusion PDEs for...
In this paper we present a continuum mathematical model of vascular tumour growth which is based on ...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
A fully adaptive non-linear full multigrid (FMG) algorithm is implemented to computationally simulat...
We present the performance gains of an openMP implementation of a fully adaptive nonlinear full mult...
This is the first paper in a two-part series in which we develop, analyze and simulate a diffuse int...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper we present a continuum mathematical model of vascular tumour growth which is based on ...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
In this paper we present a continuum mathematical model of vascular tumour growth which is based on ...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
A fully adaptive non-linear full multigrid (FMG) algorithm is implemented to computationally simulat...
We present the performance gains of an openMP implementation of a fully adaptive nonlinear full mult...
This is the first paper in a two-part series in which we develop, analyze and simulate a diffuse int...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper we present a continuum mathematical model of vascular tumour growth which is based on ...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the b...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
In this paper we present a continuum mathematical model of vascular tumour growth which is based on ...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...