In this paper a generalized model for the growth of avascular tumours is presented. The formulation leads naturally to the incorporation of free boundaries which define the outer tumour surface explicitly and various inner surfaces implicitly. A combination of numerical simulations, asymptotic analysis and perturbation techniques is used to study the model and yields results, which agree well with experimentally-observed phenomena
This work studies the growth of a ”multicellular spheroid”, that is, of a solid spherical tumour, tr...
This master thesis consists of integrating an advanced model for avascular tumour growth into a mult...
We develop and calibrate a mathematical model for avascular tumour growth. The model is formulated a...
In this paper a generalized model for the growth of avascular tumours is presented. The formulation ...
The early development of solid tumours has been extensively studied, both experimentally via the mul...
A system of nonlinear partial differential equations is proposed as a model for the growth of an ava...
This paper proposes a multicell model to describe the evolution of tumour growth from the avascular ...
AbstractThe 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...
Tumor spheroids provide an effective in vitro tool to study the early stages of cancer growth. The n...
International audienceIn this paper, we present a mathematical model for avascular tumor growth and ...
ABSTRACT The desire to understand tumor complexity has given rise to mathematical models to describe...
AbstractThis paper deals with a mathematical model describing the cell cycle dynamics and chemotacti...
In this chapter we review existing continuum models of avascular tumor growth, explaining howthey ar...
This review will outline a number of illustrative mathematical models describing the growth of avasc...
This work studies the growth of a ”multicellular spheroid”, that is, of a solid spherical tumour, tr...
This master thesis consists of integrating an advanced model for avascular tumour growth into a mult...
We develop and calibrate a mathematical model for avascular tumour growth. The model is formulated a...
In this paper a generalized model for the growth of avascular tumours is presented. The formulation ...
The early development of solid tumours has been extensively studied, both experimentally via the mul...
A system of nonlinear partial differential equations is proposed as a model for the growth of an ava...
This paper proposes a multicell model to describe the evolution of tumour growth from the avascular ...
AbstractThe 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...
Tumor spheroids provide an effective in vitro tool to study the early stages of cancer growth. The n...
International audienceIn this paper, we present a mathematical model for avascular tumor growth and ...
ABSTRACT The desire to understand tumor complexity has given rise to mathematical models to describe...
AbstractThis paper deals with a mathematical model describing the cell cycle dynamics and chemotacti...
In this chapter we review existing continuum models of avascular tumor growth, explaining howthey ar...
This review will outline a number of illustrative mathematical models describing the growth of avasc...
This work studies the growth of a ”multicellular spheroid”, that is, of a solid spherical tumour, tr...
This master thesis consists of integrating an advanced model for avascular tumour growth into a mult...
We develop and calibrate a mathematical model for avascular tumour growth. The model is formulated a...