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 th...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
In this paper, we show the application of the meshless numerical method called “Generalized Finite D...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
<p>A fully adaptive non-linear full multigrid (FMG) algorithm is implemented to computationally simu...
This is the first paper in a two-part series in which we develop, analyze and simulate a diffuse int...
We present the performance gains of an openMP implementation of a fully adaptive nonlinear full mult...
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 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 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 ...
In this paper, we show the application of the meshless numerical method called “Generalized Finite D...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...
<p>A fully adaptive non-linear full multigrid (FMG) algorithm is implemented to computationally simu...
This is the first paper in a two-part series in which we develop, analyze and simulate a diffuse int...
We present the performance gains of an openMP implementation of a fully adaptive nonlinear full mult...
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 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 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 ...
In this paper, we show the application of the meshless numerical method called “Generalized Finite D...
The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do ...