Although the importance of cellular forces to a wide range of embryogenesis and disease processes is widely recognized, measuring these forces is challenging, especially in three dimensions. Here, we introduce CellFIT-3D, a force inference technique that allows tension maps for three-dimensional cellular systems to be estimated from image stacks. Like its predecessors, video force microscopy and CellFIT, this cell mechanics technique assumes boundary-specific interfacial tensions to be the primary drivers, and it constructs force-balance equations based on triple junction (TJ) dihedral angles. The technique involves image processing, segmenting of cells, grouping of cell outlines, calculation of dihedral planes, averaging along three-dimens...
Cell shapes and connectivities evolve over time as the colony changes shape or embryos develop. Shap...
The interactions between biochemical processes and mechanical signaling play important roles durin...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Although the importance of cellular forces to a wide range of embryogenesis and disease processes is...
If we are to understand why cells move in contexts such as early embryo development, wound healing, ...
Mechanical forces play a key role in a wide range of biological processes, from embryogenesis to can...
Mechanical forces play a key role in a wide range of biological processes, from embryogenesis to can...
Physical forces direct the orientation of the cell division axis for cells cultured on rigid, two-di...
The forces cells apply to their surroundings control biological processes such as growth, adhesion, ...
In the course of animal development, the shape of tissue emerges in part from mechanical and biochem...
International audienceRecognizing the crucial role of mechanical regulation and forces in tissue dev...
Dataset of 47 artificial images (.tif) and corresponding segmentation masks (.tif), generated from s...
Cells engage in mechanical force exchange with their extracellular environment through tension gener...
In the course of animal development, the shape of tissue emerges in part from mechanical and biochem...
Building a physical framework to account for the shape of cells in epithelia is an important challen...
Cell shapes and connectivities evolve over time as the colony changes shape or embryos develop. Shap...
The interactions between biochemical processes and mechanical signaling play important roles durin...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Although the importance of cellular forces to a wide range of embryogenesis and disease processes is...
If we are to understand why cells move in contexts such as early embryo development, wound healing, ...
Mechanical forces play a key role in a wide range of biological processes, from embryogenesis to can...
Mechanical forces play a key role in a wide range of biological processes, from embryogenesis to can...
Physical forces direct the orientation of the cell division axis for cells cultured on rigid, two-di...
The forces cells apply to their surroundings control biological processes such as growth, adhesion, ...
In the course of animal development, the shape of tissue emerges in part from mechanical and biochem...
International audienceRecognizing the crucial role of mechanical regulation and forces in tissue dev...
Dataset of 47 artificial images (.tif) and corresponding segmentation masks (.tif), generated from s...
Cells engage in mechanical force exchange with their extracellular environment through tension gener...
In the course of animal development, the shape of tissue emerges in part from mechanical and biochem...
Building a physical framework to account for the shape of cells in epithelia is an important challen...
Cell shapes and connectivities evolve over time as the colony changes shape or embryos develop. Shap...
The interactions between biochemical processes and mechanical signaling play important roles durin...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...