Many tumor-growth phenomena can be considered as multiphase problems. Employing the continuum theory of mixtures, phase-field tumor-growth models can be derived with diffuse interfaces. The chosen form of the Helmholtz free-energy leads to equations of the Cahn-Hilliard type. Such nonlinear fourth-order partial-differential equations are time-dependent, and their solutions exhibit alternating fast and slow variations in time. It is therefore of prime importance to use adaptive time-stepping to efficiently simulate the entire dynamics of the system [5]. In this contribution, we consider a thermodynamically consistent four-species model of tumor growth in which the energy is non-increasing and total mass is conserved [6]. In order to inherit ...
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...
Many tumor-growth phenomena can be considered as multiphase problems. Employing the continuum theory...
Many tumor-growth phenomena can be considered as multiphase problems. Employing the continuum theory...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
In some nonlinear reaction-diffusion equations of interest in applications, there are transition lay...
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 work, we consider a diffuse interface model for tumour growth in the presence of a nutrient ...
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...
Many tumor-growth phenomena can be considered as multiphase problems. Employing the continuum theory...
Many tumor-growth phenomena can be considered as multiphase problems. Employing the continuum theory...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
We present unconditionally energy-stable second-order time-accurate schemes for diffuse-interface (p...
In some nonlinear reaction-diffusion equations of interest in applications, there are transition lay...
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 work, we consider a diffuse interface model for tumour growth in the presence of a nutrient ...
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...