Osteosarcoma is the most common malignant bone tumor in children and adolescents with a poor prognosis. To describe the progression of osteosarcoma, we expanded a system of data-driven ODE from a previous study into a system of Reaction-Diffusion-Advection (RDA) equations and coupled it with Biot equations of poroelasticity to form a bio-mechanical model. The RDA system includes the spatio-temporal information of the key components of the tumor microenvironment. The Biot equations are comprised of an equation for the solid phase, which governs the movement of the solid tumor, and an equation for the fluid phase, which relates to the motion of cells. The model predicts the total number of cells and cytokines of the tumor microenvironment and...
Hypoxia and the pH level of the tumor microenvironment have a great impact on the treatment of tumor...
A new computational model based on porous media mechanics has been recently developed for prediction...
Tumor progression depends critically upon the interactions between the tumor cells and their microen...
Mathematical investigation of tumor growth is becoming increasingly popular in scientific literature...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
ABSTRACT The desire to understand tumor complexity has given rise to mathematical models to describe...
Abstract. In this paper, we present a mathematical model for avascular tumor growth and its numerica...
International audienceIn this paper, we present a mathematical model for avascular tumor growth and ...
Tumor spheroids provide an effective in vitro tool to study the early stages of cancer growth. The n...
The recent discovery of cancer stem cells (CSCs), or tumor initiating cells (TICs), in a variety of ...
In this thesis we explore tumor-microenvironment dynamics using three models of decreasing complexit...
Modeling of tumor growth has been performed according to various approaches addressing different bio...
The macroscopic growth of brain tumors has been studied by means of different computational modeling...
AbstractThe desire to understand tumor complexity has given rise to mathematical models to describe ...
Hypoxia and the pH level of the tumor microenvironment have a great impact on the treatment of tumor...
A new computational model based on porous media mechanics has been recently developed for prediction...
Tumor progression depends critically upon the interactions between the tumor cells and their microen...
Mathematical investigation of tumor growth is becoming increasingly popular in scientific literature...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
ABSTRACT The desire to understand tumor complexity has given rise to mathematical models to describe...
Abstract. In this paper, we present a mathematical model for avascular tumor growth and its numerica...
International audienceIn this paper, we present a mathematical model for avascular tumor growth and ...
Tumor spheroids provide an effective in vitro tool to study the early stages of cancer growth. The n...
The recent discovery of cancer stem cells (CSCs), or tumor initiating cells (TICs), in a variety of ...
In this thesis we explore tumor-microenvironment dynamics using three models of decreasing complexit...
Modeling of tumor growth has been performed according to various approaches addressing different bio...
The macroscopic growth of brain tumors has been studied by means of different computational modeling...
AbstractThe desire to understand tumor complexity has given rise to mathematical models to describe ...
Hypoxia and the pH level of the tumor microenvironment have a great impact on the treatment of tumor...
A new computational model based on porous media mechanics has been recently developed for prediction...
Tumor progression depends critically upon the interactions between the tumor cells and their microen...