Mathematical and computational models are used to describe biomechanical processes in multicellular systems. Here, we develop a model to analyse how two types of epithelial cell layers interact during tissue invasion depending on their cellular properties, i.e., simulating cancer cells expanding into a region of normal cells. We model the tissue invasion process using the cellular Potts model and implement our two-dimensional computational simulations in the software package CompuCell3D. The model predicts that differences in mechanical properties of cells can lead to tissue invasion, even if the division rates and death rates of the two cell types are the same. We also show how the invasion speed varies depending on the cell division and d...
We develop a three-dimensional genuinely hybrid atomistic-continuum model that describes the invasiv...
The ability of cancer cells to break out of tissue compartments and invade locally gives solid tumou...
We investigate morphologies of proliferating cellular tissue using a newly developed numerical simul...
Mathematical and computational models are used to describe biomechanical processes in multicellular ...
The invasive capability is fundamental in determining the malignancy of a solid tumor. Revealing bio...
The aim of this contribution is to put together in a systematic way several approaches operating at ...
We use a two-dimensional cellular Potts model to represent the behavior of an epithelial cell layer ...
Studying the biophysical interactions between cells is crucial to understanding how normal tissue de...
We investigate morphologies of proliferating cellular tissues using a numerical simulation model for...
The transition from the epithelial to mesenchymal phenotype and its reverse (from mesenchymal to epi...
The aim of this contribution is to put together in a systematic way several approaches operating at ...
We propose a multiscale model for the invasion of the extracellular matrix by two types of cancer ce...
International audienceThe physical laws governing the morphogenesis of biological tissues remain lar...
Epithelial-mesenchymal transition (EMT), a process in which immotile cells that line surfaces in the...
Understanding the biomechanical properties and the effect of biomechanical force on epithelial cells...
We develop a three-dimensional genuinely hybrid atomistic-continuum model that describes the invasiv...
The ability of cancer cells to break out of tissue compartments and invade locally gives solid tumou...
We investigate morphologies of proliferating cellular tissue using a newly developed numerical simul...
Mathematical and computational models are used to describe biomechanical processes in multicellular ...
The invasive capability is fundamental in determining the malignancy of a solid tumor. Revealing bio...
The aim of this contribution is to put together in a systematic way several approaches operating at ...
We use a two-dimensional cellular Potts model to represent the behavior of an epithelial cell layer ...
Studying the biophysical interactions between cells is crucial to understanding how normal tissue de...
We investigate morphologies of proliferating cellular tissues using a numerical simulation model for...
The transition from the epithelial to mesenchymal phenotype and its reverse (from mesenchymal to epi...
The aim of this contribution is to put together in a systematic way several approaches operating at ...
We propose a multiscale model for the invasion of the extracellular matrix by two types of cancer ce...
International audienceThe physical laws governing the morphogenesis of biological tissues remain lar...
Epithelial-mesenchymal transition (EMT), a process in which immotile cells that line surfaces in the...
Understanding the biomechanical properties and the effect of biomechanical force on epithelial cells...
We develop a three-dimensional genuinely hybrid atomistic-continuum model that describes the invasiv...
The ability of cancer cells to break out of tissue compartments and invade locally gives solid tumou...
We investigate morphologies of proliferating cellular tissue using a newly developed numerical simul...