AbstractMicropatterned substrates are often used to standardize cell experiments and to quantitatively study the relation between cell shape and function. Moreover, they are increasingly used in combination with traction force microscopy on soft elastic substrates. To predict the dynamics and steady states of cell shape and forces without any a priori knowledge of how the cell will spread on a given micropattern, here we extend earlier formulations of the two-dimensional cellular Potts model. The third dimension is treated as an area reservoir for spreading. To account for local contour reinforcement by peripheral bundles, we augment the cellular Potts model by elements of the tension-elasticity model. We first parameterize our model and sh...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...
AbstractWe have analysed the response of cells on a bed of micro-posts idealized as a Winkler founda...
Abstract: We have analysed the response of cells on a bed of micro-posts idealized as a Winkler foun...
AbstractMicropatterned substrates are often used to standardize cell experiments and to quantitative...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Here we describe a method for quantifying traction in cells that are physically constrained within m...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Biological cells are able to sense the stiffness, geometry and topography of their environment and ...
Single and collective cell dynamics, cell shape changes, and cell migration can be conveniently repr...
Tools from materials science are increasingly used to decrease the variability that often limits the...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
It has grown a great interest among biophysicists that adherent cell senses substrate stiffness and ...
AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton...
We have analysed the response of cells on a bed of micro-posts idealized as a Winkler foundation usi...
International audienceThere is compelling evidence that substrate stiffness affects cell adhesion as...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...
AbstractWe have analysed the response of cells on a bed of micro-posts idealized as a Winkler founda...
Abstract: We have analysed the response of cells on a bed of micro-posts idealized as a Winkler foun...
AbstractMicropatterned substrates are often used to standardize cell experiments and to quantitative...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Here we describe a method for quantifying traction in cells that are physically constrained within m...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Biological cells are able to sense the stiffness, geometry and topography of their environment and ...
Single and collective cell dynamics, cell shape changes, and cell migration can be conveniently repr...
Tools from materials science are increasingly used to decrease the variability that often limits the...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
It has grown a great interest among biophysicists that adherent cell senses substrate stiffness and ...
AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton...
We have analysed the response of cells on a bed of micro-posts idealized as a Winkler foundation usi...
International audienceThere is compelling evidence that substrate stiffness affects cell adhesion as...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...
AbstractWe have analysed the response of cells on a bed of micro-posts idealized as a Winkler founda...
Abstract: We have analysed the response of cells on a bed of micro-posts idealized as a Winkler foun...