The dynamic behaviour of epithelial cell sheets plays a central role during development, growth, disease and wound healing. These processes occur as a result of cell adhesion, migration, division, differentiation and death, and involve multiple processes acting at the cellular and molecular level. Computational models offer a useful means by which to investigate and test hypotheses about these processes, and have played a key role in the study of cell–cell interactions. However, the necessarily complex nature of such models means that it is difficult to make accurate comparison between different models, since it is often impossible to distinguish between differences in behaviour that are due to the underlying model assumptions, and those du...
Tissue morphogenesis requires the collective, coordinated motion and deformation of a large number o...
‘Cell-based’ models provide a powerful computational tool for studying the mechanisms underlying the...
In this paper we present a comprehensive computational framework within which the effects of chemica...
<p>Poster contribution P68 for the workshop on "Mechanics and Growth of Tissues: From Development to...
AbstractThe dynamic behavior of epithelial cell sheets plays a central role during numerous developm...
The purpose of this thesis is to develop a vertex model framework that can be used to perform comput...
The purpose of this thesis is to develop a vertex model framework that can be used to perform comput...
Abstract Vertex models are a widespread approach for describing the biophysics and behaviors of mult...
Mathematical and computational modelling provides a useful framework within which to investigate the...
AbstractThe dynamic behavior of epithelial cell sheets plays a central role during numerous developm...
We introduce a model for describing the dynamics of large numbers of interacting cells. The fundamen...
We introduce a model for describing the dynamics of large numbers of interacting cells. The fundamen...
‘Cell-based’ models provide a powerful computational tool for studying the mechanisms underlying the...
‘Cell-based’ models provide a powerful computational tool for studying the mechanisms underlying the...
During tissue morphogenesis forces at the cellular level cause deformation of tissues. Through comp...
Tissue morphogenesis requires the collective, coordinated motion and deformation of a large number o...
‘Cell-based’ models provide a powerful computational tool for studying the mechanisms underlying the...
In this paper we present a comprehensive computational framework within which the effects of chemica...
<p>Poster contribution P68 for the workshop on "Mechanics and Growth of Tissues: From Development to...
AbstractThe dynamic behavior of epithelial cell sheets plays a central role during numerous developm...
The purpose of this thesis is to develop a vertex model framework that can be used to perform comput...
The purpose of this thesis is to develop a vertex model framework that can be used to perform comput...
Abstract Vertex models are a widespread approach for describing the biophysics and behaviors of mult...
Mathematical and computational modelling provides a useful framework within which to investigate the...
AbstractThe dynamic behavior of epithelial cell sheets plays a central role during numerous developm...
We introduce a model for describing the dynamics of large numbers of interacting cells. The fundamen...
We introduce a model for describing the dynamics of large numbers of interacting cells. The fundamen...
‘Cell-based’ models provide a powerful computational tool for studying the mechanisms underlying the...
‘Cell-based’ models provide a powerful computational tool for studying the mechanisms underlying the...
During tissue morphogenesis forces at the cellular level cause deformation of tissues. Through comp...
Tissue morphogenesis requires the collective, coordinated motion and deformation of a large number o...
‘Cell-based’ models provide a powerful computational tool for studying the mechanisms underlying the...
In this paper we present a comprehensive computational framework within which the effects of chemica...