We have developed a new computational modelling paradigm for predicting the emergent behaviour resulting from the interaction of cells in epithelial tissue. As proof-of-concept, an agent-based model, in which there is a one-to-one correspondence between biological cells and software agents, has been coupled to a simple physical model. Behaviour of the computational model is compared with the growth characteristics of epithelial cells in monolayer culture, using growth media with low and physiological calcium concentrations. Results show a qualitative fit between the growth characteristics produced by the simulation and the in vitro cell models
Accumulating evidence indicates that the interaction between epithelialand mesenchymal cells plays a...
<div><p>Modelling the displacement of thousands of cells that move in a collective way is required f...
The construction of a network of cell-to-cell contacts makes it possible to characterize the pattern...
We have developed a new computational modelling paradigm for predicting the emergent behaviour resul...
We have developed a new computational modelling paradigm for predicting the emergent behaviour resul...
We have developed a new computational modelling paradigm for predicting the emergent behaviour resu...
To understand how molecular level events are causally linked in vitro to the emer-gent, phenotypic a...
The characteristics of biological tissues are determined by the interactions of large numbers of aut...
How do individual epithelial cells (ECs) organize into multicellular structures? ECs are studied in ...
How do individual epithelial cells (ECs) organize into multicellular structures? ECs are studied in ...
Computational modeling of biological systems, or ‘in silico biology’ is an emerging tool for underst...
Understanding the biomechanical properties and the effect of biomechanical force on epithelial cells...
BackgroundThree-dimensional (3D) embedded cell cultures provide an appropriate physiological environ...
Mathematical and computational models are used to describe biomechanical processes in multicellular ...
BackgroundWhen grown in three-dimensional (3D) cultures, epithelial cells typically form cystic orga...
Accumulating evidence indicates that the interaction between epithelialand mesenchymal cells plays a...
<div><p>Modelling the displacement of thousands of cells that move in a collective way is required f...
The construction of a network of cell-to-cell contacts makes it possible to characterize the pattern...
We have developed a new computational modelling paradigm for predicting the emergent behaviour resul...
We have developed a new computational modelling paradigm for predicting the emergent behaviour resul...
We have developed a new computational modelling paradigm for predicting the emergent behaviour resu...
To understand how molecular level events are causally linked in vitro to the emer-gent, phenotypic a...
The characteristics of biological tissues are determined by the interactions of large numbers of aut...
How do individual epithelial cells (ECs) organize into multicellular structures? ECs are studied in ...
How do individual epithelial cells (ECs) organize into multicellular structures? ECs are studied in ...
Computational modeling of biological systems, or ‘in silico biology’ is an emerging tool for underst...
Understanding the biomechanical properties and the effect of biomechanical force on epithelial cells...
BackgroundThree-dimensional (3D) embedded cell cultures provide an appropriate physiological environ...
Mathematical and computational models are used to describe biomechanical processes in multicellular ...
BackgroundWhen grown in three-dimensional (3D) cultures, epithelial cells typically form cystic orga...
Accumulating evidence indicates that the interaction between epithelialand mesenchymal cells plays a...
<div><p>Modelling the displacement of thousands of cells that move in a collective way is required f...
The construction of a network of cell-to-cell contacts makes it possible to characterize the pattern...