about
The forces that shape embryos: physical aspects of convergent extension by cell intercalationMolecular model for force production and transmission during vertebrate gastrulationMechanical strain determines the axis of planar polarity in ciliated epitheliaNormal table of embryonic development in the four-toed salamander, Hemidactylium scutatum.Urodeles remove mesoderm from the superficial layer by subduction through a bilateral primitive streak.How we are shaped: the biomechanics of gastrulation.Mechanisms, mechanics and function of epithelial-mesenchymal transitions in early development.The bending of cell sheets--from folding to rolling.Pattern and morphogenesis of presumptive superficial mesoderm in two closely related species, Xenopus laevis and Xenopus tropicalis.Morphogenic machines evolve more rapidly than the signals that pattern them: lessons from amphibians.Epithelial type, ingression, blastopore architecture and the evolution of chordate mesoderm morphogenesis.Dynamic determinations: patterning the cell behaviours that close the amphibian blastoporeQuantitative trait loci affecting survival and fertility-related traits in Caenorhabditis elegans show genotype-environment interactions, pleiotropy and epistasisEvidence that the deep keratin filament systems of the Xenopus embryo act to ensure normal gastrulation.Large, long range tensile forces drive convergence during Xenopus blastopore closure and body axis elongation.
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description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
David R Shook
@ast
David R Shook
@en
David R Shook
@es
David R Shook
@nl
type
label
David R Shook
@ast
David R Shook
@en
David R Shook
@es
David R Shook
@nl
prefLabel
David R Shook
@ast
David R Shook
@en
David R Shook
@es
David R Shook
@nl
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P106
P21
P31
P496
0000-0002-0131-1834