We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional epithelial tissues. Our model includes three key ingredients observed across many epithelia, namely cell-cell adhesion, cell death and a cell division process that depends on the surrounding environment. We show a rich non-equilibrium phase diagram depending on the ratio of cell death to cell division and on the adhesion strength. For large apoptosis rates, cells die out and the tissue disintegrates. As the death rate decreases, however, we show, consecutively, the existence of a gas-like phase, a gel-like phase, and a dense confluent (tissue) phase. Most striking is the observation that the tissue is self-melting through its own internal act...
Collections of epithelial cells form macroscopic materials which show collective behavior including ...
Recent technological advances in high-resolution imaging and artificial modulation of genetic functi...
Invitation to a keynote lecture (by Taiji Adachi and Dimitrije Stamenovic) for the session "Computat...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
D. M.-F. and J.-L. B. acknowledge financial support from ERC grant ADG20110209 and NVIDIA Corporatio...
Recent experiments and simulations have indicated that confluent epithelial layers, wher...
In multicellular organisms, individual cells play a myriad of roles in maintaining life, both as sin...
We investigate morphologies of proliferating cellular tissue using a newly developed numerical simul...
We investigate morphologies of proliferating cellular tissue using a newly developed numerical simul...
Tissue mechanical properties such as rigidity and fluidity, and changes in these properties driven b...
Collections of epithelial cells form macroscopic materials which show collective behavior including ...
Recent technological advances in high-resolution imaging and artificial modulation of genetic functi...
Invitation to a keynote lecture (by Taiji Adachi and Dimitrije Stamenovic) for the session "Computat...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
We investigate the effects of cell division and apoptosis on collective dynamics in two-dimensional ...
D. M.-F. and J.-L. B. acknowledge financial support from ERC grant ADG20110209 and NVIDIA Corporatio...
Recent experiments and simulations have indicated that confluent epithelial layers, wher...
In multicellular organisms, individual cells play a myriad of roles in maintaining life, both as sin...
We investigate morphologies of proliferating cellular tissue using a newly developed numerical simul...
We investigate morphologies of proliferating cellular tissue using a newly developed numerical simul...
Tissue mechanical properties such as rigidity and fluidity, and changes in these properties driven b...
Collections of epithelial cells form macroscopic materials which show collective behavior including ...
Recent technological advances in high-resolution imaging and artificial modulation of genetic functi...
Invitation to a keynote lecture (by Taiji Adachi and Dimitrije Stamenovic) for the session "Computat...