AbstractCollective cell migration in epithelial tissues resembles fluid-like behavior in time-lapse recordings. In the last years, hydrodynamic velocity fields in living matter have been studied intensely. The emergent properties were remarkably similar to phenomena known from active soft matter systems. Here, we review migration experiments of large cellular ensembles as well as of mesoscopic cohorts in micro-structured environments. Concepts such as diffusion, velocity correlations, swirl strength and polarization are metrics to quantify the cellular dynamics both in experiments as well as in computational simulations. We discuss challenges relating collective migration to single cell and oligocellular behavior as well as linking the phen...
We construct a phase-field model for collective cell migration based on a Ginzburg-Landau free-energ...
We discuss recent advances in interpreting the collective dynamics of cellular assemblies using idea...
Tumor cells invade individually or in groups, mediated by mechanical interactions between cells and ...
AbstractCollective cell migration in epithelial tissues resembles fluid-like behavior in time-lapse ...
Cell migration plays an important role in a wide variety of biological processes and can incorporate...
AbstractWe report quantitative measurements of the velocity field of collectively migrating cells in...
This dissertation focuses on gaining understanding of cell migration and collective behavior through...
AbstractCollective migration of mechanically coupled cell layers is a notable feature of wound heali...
Collective cell migration in dense tissues underlies important biological processes, such as embryon...
Unlike molecules, which are driven thermally by Brownian motion, eukaryotic cells move in a particul...
This dissertation investigates the physical mechanics of collective cell migration in monolayers of ...
Single and collective cell migration are fundamental processes critical for physiological phenomena ...
Most eukaryotic cells sense and respond to the mechanical properties of their surroundings. This can...
Epithelial cell monolayers show remarkable displacement and velocity correlations over distances of ...
International audienceCell migration is a complex phenomenon that plays an important role in many bi...
We construct a phase-field model for collective cell migration based on a Ginzburg-Landau free-energ...
We discuss recent advances in interpreting the collective dynamics of cellular assemblies using idea...
Tumor cells invade individually or in groups, mediated by mechanical interactions between cells and ...
AbstractCollective cell migration in epithelial tissues resembles fluid-like behavior in time-lapse ...
Cell migration plays an important role in a wide variety of biological processes and can incorporate...
AbstractWe report quantitative measurements of the velocity field of collectively migrating cells in...
This dissertation focuses on gaining understanding of cell migration and collective behavior through...
AbstractCollective migration of mechanically coupled cell layers is a notable feature of wound heali...
Collective cell migration in dense tissues underlies important biological processes, such as embryon...
Unlike molecules, which are driven thermally by Brownian motion, eukaryotic cells move in a particul...
This dissertation investigates the physical mechanics of collective cell migration in monolayers of ...
Single and collective cell migration are fundamental processes critical for physiological phenomena ...
Most eukaryotic cells sense and respond to the mechanical properties of their surroundings. This can...
Epithelial cell monolayers show remarkable displacement and velocity correlations over distances of ...
International audienceCell migration is a complex phenomenon that plays an important role in many bi...
We construct a phase-field model for collective cell migration based on a Ginzburg-Landau free-energ...
We discuss recent advances in interpreting the collective dynamics of cellular assemblies using idea...
Tumor cells invade individually or in groups, mediated by mechanical interactions between cells and ...