Here we introduce a model of solid tumour growth coupled with a multiscale biomechanical description of the tumour microenvironment, which facilitates the explicit simulation of fibre-fibre and tumour-fibre interactions. We hypothesise that such a model, which provides a purely mechanical description of tumour-host interactions, can be used to explain experimental observations of the effect of collagen micromechanics on solid tumour growth. The model was specified to mouse tumour data, and numerical simulations were performed. The multiscale model produced lower stresses than an equivalent continuum-like approach, due to a more realistic remodelling of the collagen microstructure. Furthermore, solid tumour growth was found to cause a passiv...
Once cancer is initiated, with normal cells mutated into malignant ones, a solid tumour grows, devel...
In the present thesis, we propose the study of the evolution of biological tissues, with particular ...
Modeling of tumor growth has been performed according to various approaches addressing different bio...
Here we introduce a model of solid tumour growth coupled with a multiscale biomechanical description...
It is now widely accepted that cells are mechanically integrated structures which dynamically respon...
<div><p></p><p>Solid stresses emerge as the expanding tumor displaces and deforms the surrounding no...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
Resorting to a multiphase modelling framework, tumours are described here as a mixture of tumour and...
The rules and mechanical forces governing cell motility and interactions with the extracellular matr...
The evolution of biological systems is strongly influenced by physical factors, such as applied forc...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
Tumor spheroids provide an effective in vitro tool to study the early stages of cancer growth. The n...
CKM gratefully acknowledges the support of EPSRC Grant No. EP/N014642/1 (EPSRC Centre for Multiscale...
Mathematical models can provide a quantitatively sophisticated description of tumor cell (TC) behavi...
A mathematical model is adapted to the description of the growth of an avascular tumour spheroid emb...
Once cancer is initiated, with normal cells mutated into malignant ones, a solid tumour grows, devel...
In the present thesis, we propose the study of the evolution of biological tissues, with particular ...
Modeling of tumor growth has been performed according to various approaches addressing different bio...
Here we introduce a model of solid tumour growth coupled with a multiscale biomechanical description...
It is now widely accepted that cells are mechanically integrated structures which dynamically respon...
<div><p></p><p>Solid stresses emerge as the expanding tumor displaces and deforms the surrounding no...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
Resorting to a multiphase modelling framework, tumours are described here as a mixture of tumour and...
The rules and mechanical forces governing cell motility and interactions with the extracellular matr...
The evolution of biological systems is strongly influenced by physical factors, such as applied forc...
Mechanical factors play a major role in tumor development and response to treatment. This is more ev...
Tumor spheroids provide an effective in vitro tool to study the early stages of cancer growth. The n...
CKM gratefully acknowledges the support of EPSRC Grant No. EP/N014642/1 (EPSRC Centre for Multiscale...
Mathematical models can provide a quantitatively sophisticated description of tumor cell (TC) behavi...
A mathematical model is adapted to the description of the growth of an avascular tumour spheroid emb...
Once cancer is initiated, with normal cells mutated into malignant ones, a solid tumour grows, devel...
In the present thesis, we propose the study of the evolution of biological tissues, with particular ...
Modeling of tumor growth has been performed according to various approaches addressing different bio...