AbstractWe report a model describing the various stages of dorsal closure of Drosophila. Inspired by experimental observations, we represent the amnioserosa by 81 hexagonal cells that are coupled mechanically through the position of the nodes and the elastic forces on the edges. In addition, each cell has radial spokes representing actin filaments on which myosin motors can attach and exert contractile forces on the nodes, the attachment being controlled by a signaling molecule. Thus, the model couples dissipative cell and tissue motion with kinetic equations describing the myosin and signal dynamics. In the early phase, amnioserosa cells oscillate as a result of coupling among the chemical signaling, myosin attachment/detachment, and mecha...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...
The coordinated migration and fusion of epithelial sheets is employed on numerous occasions to shape...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...
AbstractWe report a model describing the various stages of dorsal closure of Drosophila. Inspired by...
Oscillatory behaviour in force-generating systems is a pervasive phenomenon in cell biology. In this...
Tissue morphogenesis requires coordination of multiple force-producing components. During dorsal clo...
SummaryDorsal closure is a tissue-modeling process in the developing Drosophila embryo during which ...
International audienceDuring embryogenesis, drosophila embryos undergo epithelial folding and unfold...
During embryogenesis, Drosophila embryos undergo epithelial folding and unfolding, which leads to a ...
AbstractProgrammed patterns of gene expression, cell-cell signaling, and cellular forces cause morph...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...
The vast diversity of life on Earth develops from relatively uniform beginnings via self-organised ...
AbstractDorsal closure during Drosophila embryogenesis is an important model system for investigatin...
<div><p>Mechanics has an important role during morphogenesis, both in the generation of forces drivi...
The vast diversity of life on Earth develops from relatively uniform beginnings via self-organised ...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...
The coordinated migration and fusion of epithelial sheets is employed on numerous occasions to shape...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...
AbstractWe report a model describing the various stages of dorsal closure of Drosophila. Inspired by...
Oscillatory behaviour in force-generating systems is a pervasive phenomenon in cell biology. In this...
Tissue morphogenesis requires coordination of multiple force-producing components. During dorsal clo...
SummaryDorsal closure is a tissue-modeling process in the developing Drosophila embryo during which ...
International audienceDuring embryogenesis, drosophila embryos undergo epithelial folding and unfold...
During embryogenesis, Drosophila embryos undergo epithelial folding and unfolding, which leads to a ...
AbstractProgrammed patterns of gene expression, cell-cell signaling, and cellular forces cause morph...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...
The vast diversity of life on Earth develops from relatively uniform beginnings via self-organised ...
AbstractDorsal closure during Drosophila embryogenesis is an important model system for investigatin...
<div><p>Mechanics has an important role during morphogenesis, both in the generation of forces drivi...
The vast diversity of life on Earth develops from relatively uniform beginnings via self-organised ...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...
The coordinated migration and fusion of epithelial sheets is employed on numerous occasions to shape...
Mechanics has an important role during morphogenesis, both in the generation of forces driving cell ...