Mechanically coupled cells can generate forces driving cell and tissue morphogenesis during development. Visualization and measuring of these forces is of major importance to better understand the complexity of the biomechanic processes that shape cells and tissues. Here, we describe how UV laser ablation can be utilized to quantitatively assess mechanical tension in different tissues of the developing zebrafish and in cultures of primary germ layer progenitor cells ex vivo
The study of morphogenesis in animals is concerned with the question of how the structures composing...
International audienceMorphogenesis requires coordination between genetic patterning and mechanical ...
AbstractActin and myosin assemble into a thin layer of a highly dynamic network underneath the membr...
Mechanically coupled cells can generate forces driving cell and tissue morphogenesis during developm...
Mechanically coupled cells can generate forces driving cell and tissue morphogenesis during developm...
Tissue morphogenesis is driven by mechanical forces triggering cell movements and shape changes. Qua...
International audienceMorphogenesis involves many cell movements to organize cells into tissues and ...
When cells in epithelial sheets are damaged by intrinsic or extrinsic causes, they are eliminated by...
Laser ablation is routinely performed to infer mechanical tension in cells and tissues. Here we desc...
Mechanical properties of cells and tissues closely link to their architectures and physiological fun...
International audienceLaser ablation is nowadays a widespread technique to probe tissue mechanics du...
International audienceLaser dissection is a useful tool in developmental biology to probe mechanical...
Developmental biologists try to elucidate how it is possible for cells, all originating from the sam...
International audienceMorphogenesis relies on the active generation of forces, and the transmission ...
The process of a single cell evolving into a complex organism results from a series of coordinated m...
The study of morphogenesis in animals is concerned with the question of how the structures composing...
International audienceMorphogenesis requires coordination between genetic patterning and mechanical ...
AbstractActin and myosin assemble into a thin layer of a highly dynamic network underneath the membr...
Mechanically coupled cells can generate forces driving cell and tissue morphogenesis during developm...
Mechanically coupled cells can generate forces driving cell and tissue morphogenesis during developm...
Tissue morphogenesis is driven by mechanical forces triggering cell movements and shape changes. Qua...
International audienceMorphogenesis involves many cell movements to organize cells into tissues and ...
When cells in epithelial sheets are damaged by intrinsic or extrinsic causes, they are eliminated by...
Laser ablation is routinely performed to infer mechanical tension in cells and tissues. Here we desc...
Mechanical properties of cells and tissues closely link to their architectures and physiological fun...
International audienceLaser ablation is nowadays a widespread technique to probe tissue mechanics du...
International audienceLaser dissection is a useful tool in developmental biology to probe mechanical...
Developmental biologists try to elucidate how it is possible for cells, all originating from the sam...
International audienceMorphogenesis relies on the active generation of forces, and the transmission ...
The process of a single cell evolving into a complex organism results from a series of coordinated m...
The study of morphogenesis in animals is concerned with the question of how the structures composing...
International audienceMorphogenesis requires coordination between genetic patterning and mechanical ...
AbstractActin and myosin assemble into a thin layer of a highly dynamic network underneath the membr...