Background InformationTissue morphogenesis results from the interplay between cell growth and mechanical forces. While the impact of geometrical confinement and mechanical forces on cell proliferation has been fairly well characterised, the inverse relationship is much less understood. Here, we investigated how traction forces vary during cell cycle progression. ResultsCell shape was constrained on micropatterned substrates in order to distinguish variations in cell contractility from cell size increase. We performed traction force measurements of asynchronously dividing cells expressing a cell-cycle reporter, to obtain measurements of contractile forces generated during cell division. We found that forces tend to increase as cells progress...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Here we describe a method for quantifying traction in cells that are physically constrained within m...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Author Posting. © The Author(s), 2017. This is the author's version of the work. It is posted here ...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
\u3cp\u3eIt has long been proposed that the cell cycle is regulated by physical forces at the cell-c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Here we describe a method for quantifying traction in cells that are physically constrained within m...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
Author Posting. © The Author(s), 2017. This is the author's version of the work. It is posted here ...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
\u3cp\u3eIt has long been proposed that the cell cycle is regulated by physical forces at the cell-c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Here we describe a method for quantifying traction in cells that are physically constrained within m...