The article provides a biomechanical analysis of ventral furrow formation in the Drosophila melanogaster embryo. Ventral furrow formation is the first large-scale morphogenetic movement in the fly embryo. It involves deformation of a uniform cellular monolayer formed following cellularisation, and has therefore long been used as a simple system in which to explore the role of mechanics in force generation. Here we use a quantitative framework to carry out a systematic perturbation analysis to determine the role of each of the active forces observed. The analysis confirms that ventral furrow invagination arises from a combination of apical constriction and apical–basal shortening forces in the mesoderm, together with a combination of ectoder...
The mesoderm invagination of the Drosophila embryo is known as an archetypal morphogenic process. To...
AbstractDuring Drosophila gastrulation, the ventral mesodermal cells constrict their apices, undergo...
\u3cp\u3eThe paper describes a mechanical model of epithelial tissue development in Drosophila embry...
<div><p>The article provides a biomechanical analysis of ventral furrow formation in the <em>Drosoph...
The article provides a biomechanical analysis of ventral furrow formation in the Drosophila melanoga...
Ventral furrow formation in Drosophila is the first large-scale morphogenetic movement during the li...
\u3cp\u3eVentral furrow formation in Drosophila is the first large-scale morphogenetic movement duri...
AbstractDuring Drosophila gastrulation, the ventral mesodermal cells constrict their apices, undergo...
Formation of the ventral furrow in the Drosophila embryo relies on the apical constriction of cells ...
<div><p>Ventral furrow formation in <i>Drosophila</i> is an outstanding model system to study the me...
The formation of the ventral furrow in the Drosophila embryo has served as one of the major paradigm...
For the developmental biologist it is a fascinating question how cells can coordinate major tissue m...
\u3cp\u3eThe absence of tools for mapping the forces that drive morphogenetic movements in embryos h...
The mesoderm invagination of the Drosophila embryo is known as an archetypal morphogenic process. To...
The mesoderm invagination of the Drosophila embryo is known as an archetypal morphogenic process. To...
The mesoderm invagination of the Drosophila embryo is known as an archetypal morphogenic process. To...
AbstractDuring Drosophila gastrulation, the ventral mesodermal cells constrict their apices, undergo...
\u3cp\u3eThe paper describes a mechanical model of epithelial tissue development in Drosophila embry...
<div><p>The article provides a biomechanical analysis of ventral furrow formation in the <em>Drosoph...
The article provides a biomechanical analysis of ventral furrow formation in the Drosophila melanoga...
Ventral furrow formation in Drosophila is the first large-scale morphogenetic movement during the li...
\u3cp\u3eVentral furrow formation in Drosophila is the first large-scale morphogenetic movement duri...
AbstractDuring Drosophila gastrulation, the ventral mesodermal cells constrict their apices, undergo...
Formation of the ventral furrow in the Drosophila embryo relies on the apical constriction of cells ...
<div><p>Ventral furrow formation in <i>Drosophila</i> is an outstanding model system to study the me...
The formation of the ventral furrow in the Drosophila embryo has served as one of the major paradigm...
For the developmental biologist it is a fascinating question how cells can coordinate major tissue m...
\u3cp\u3eThe absence of tools for mapping the forces that drive morphogenetic movements in embryos h...
The mesoderm invagination of the Drosophila embryo is known as an archetypal morphogenic process. To...
The mesoderm invagination of the Drosophila embryo is known as an archetypal morphogenic process. To...
The mesoderm invagination of the Drosophila embryo is known as an archetypal morphogenic process. To...
AbstractDuring Drosophila gastrulation, the ventral mesodermal cells constrict their apices, undergo...
\u3cp\u3eThe paper describes a mechanical model of epithelial tissue development in Drosophila embry...