International audienceDownstream of gene expression, effectors such as the actomyosin contractile machinery drive embryo morphogenesis. During Drosophila embryonic axis extension, actomyosin has a specific planar-polarised organisation, which is responsible for oriented cell intercalation. In addition to these cell rearrangements, cell shape changes also contribute to tissue deformation. While cell-autonomous dynamics are well described, understanding the tissue-scale behaviour challenges us to solve the corresponding mechanical problem at the scale of the whole embryo, since mechanical resistance of all neighbouring epithelia will feedback on individual cells. Here we propose a novel numerical approach to compute the whole-embryo dynamics ...
How genetic programs generate cell-intrinsic forces to shape embryos is actively studied, but less s...
International audienceThe mechanical aspects of embryonic morphogenesis have been widely analysed by...
During early embryonic development, cell and tissue movements must be carefully orchestrated to prev...
International audienceDownstream of gene expression, effectors such as the actomyosin contractile ma...
International audienceAbstract Cell apical constriction driven by actomyosin contraction forces is a...
The actomyosin cytoskeleton is a crucial driver of morphogenesis. Yet how the behavior of large-scal...
Tissue flow during morphogenesis is commonly driven by local constriction of cell cortices, which is...
During embryogenesis tissue layers undergo morphogenetic flow rearranging and folding into specific ...
How genetic programs generate cell-intrinsic forces to shape embryos is actively studied, but less s...
<div><p>How genetic programs generate cell-intrinsic forces to shape embryos is actively studied, bu...
Epithelial sheets define organ architecture during development. Here, we employed an iterative multi...
Significance Much is known about how genetic prepatterning of the embryo defines the initial instruc...
Epithelial sheets define organ architecture during development. Here, we employed an iterative multi...
Sculpting organism shape requires that cells produce forces with proper directionality. Thus, it is ...
How genetic programs generate cell-intrinsic forces to shape embryos is actively studied, but less s...
International audienceThe mechanical aspects of embryonic morphogenesis have been widely analysed by...
During early embryonic development, cell and tissue movements must be carefully orchestrated to prev...
International audienceDownstream of gene expression, effectors such as the actomyosin contractile ma...
International audienceAbstract Cell apical constriction driven by actomyosin contraction forces is a...
The actomyosin cytoskeleton is a crucial driver of morphogenesis. Yet how the behavior of large-scal...
Tissue flow during morphogenesis is commonly driven by local constriction of cell cortices, which is...
During embryogenesis tissue layers undergo morphogenetic flow rearranging and folding into specific ...
How genetic programs generate cell-intrinsic forces to shape embryos is actively studied, but less s...
<div><p>How genetic programs generate cell-intrinsic forces to shape embryos is actively studied, bu...
Epithelial sheets define organ architecture during development. Here, we employed an iterative multi...
Significance Much is known about how genetic prepatterning of the embryo defines the initial instruc...
Epithelial sheets define organ architecture during development. Here, we employed an iterative multi...
Sculpting organism shape requires that cells produce forces with proper directionality. Thus, it is ...
How genetic programs generate cell-intrinsic forces to shape embryos is actively studied, but less s...
International audienceThe mechanical aspects of embryonic morphogenesis have been widely analysed by...
During early embryonic development, cell and tissue movements must be carefully orchestrated to prev...