AbstractEmbryonic development involves global changes in tissue shape and architecture that are driven by cell shape changes and rearrangements within cohesive cell sheets. Morphogenetic changes at the cell and tissue level require that cells generate forces and that these forces are transmitted between the cells of a coherent tissue. Contractile forces generated by the actin–myosin cytoskeleton are critical for morphogenesis, but the cellular and molecular mechanisms of contraction have been elusive for many cell shape changes and movements. Recent studies that have combined live imaging with computational and biophysical approaches have provided new insights into how contractile forces are generated and coordinated between cells and tissu...
This chapter focuses on the role of the intracellular cytoskeleton (CSK) in cell shape determination...
International audienceTissue morphogenesis relies on the production of active cellular forces. Under...
Actomyosin contractility is the major force-generating machinery that shapes cells and tissues durin...
Embryonic development involves global changes in tissue shape and architecture that are driven by ce...
Forces arising from contractile actomyosin filaments help shape tissue form during morphogenesis. De...
During development, mechanical forces cause changes in size, shape, number, position, and gene expre...
During development, mechanical forces cause changes in size, shape, number, position, and gene expre...
International audienceTissue morphogenesis is driven by coordinated cellular deformations. Recent st...
The success of embryogenesis requires coordinated cell-cell signaling, tissue patterning, and morpho...
International audienceCells are active materials; they can change shape using internal energy to bui...
The generation of organismal form - morphogenesis - arises from forces produced at the cellular leve...
Contractile actin-myosin networks generate forces that drive cell shape changes and tissue remodelin...
Anyone watching a movie of embryonic development immediately appreciates the importance of morphogen...
Mechanical forces are now recognized as key cellular effectors that together with genetic and cellul...
During animal development, cell-fate-specific changes in gene expression can modify the material pro...
This chapter focuses on the role of the intracellular cytoskeleton (CSK) in cell shape determination...
International audienceTissue morphogenesis relies on the production of active cellular forces. Under...
Actomyosin contractility is the major force-generating machinery that shapes cells and tissues durin...
Embryonic development involves global changes in tissue shape and architecture that are driven by ce...
Forces arising from contractile actomyosin filaments help shape tissue form during morphogenesis. De...
During development, mechanical forces cause changes in size, shape, number, position, and gene expre...
During development, mechanical forces cause changes in size, shape, number, position, and gene expre...
International audienceTissue morphogenesis is driven by coordinated cellular deformations. Recent st...
The success of embryogenesis requires coordinated cell-cell signaling, tissue patterning, and morpho...
International audienceCells are active materials; they can change shape using internal energy to bui...
The generation of organismal form - morphogenesis - arises from forces produced at the cellular leve...
Contractile actin-myosin networks generate forces that drive cell shape changes and tissue remodelin...
Anyone watching a movie of embryonic development immediately appreciates the importance of morphogen...
Mechanical forces are now recognized as key cellular effectors that together with genetic and cellul...
During animal development, cell-fate-specific changes in gene expression can modify the material pro...
This chapter focuses on the role of the intracellular cytoskeleton (CSK) in cell shape determination...
International audienceTissue morphogenesis relies on the production of active cellular forces. Under...
Actomyosin contractility is the major force-generating machinery that shapes cells and tissues durin...