about
There is more than one way to turn a spherical cellular monolayer inside out: type B embryo inversion in Volvox globatorXbves is a regulator of epithelial movement during early Xenopus laevis development.Wnt signal transduction pathwaysCell movement during chick primitive streak formationCdc42 Effector Protein 2 (XCEP2) is required for normal gastrulation and contributes to cellular adhesion in Xenopus laevisTraumatic Brain Injury Activation of the Adult Subventricular Zone Neurogenic NichePhenotypic Novelty in EvoDevo: The Distinction Between Continuous and Discontinuous Variation and Its Importance in Evolutionary TheoryTowards 3D in silico modeling of the sea urchin embryonic developmentEpithelial machines of morphogenesis and their potential application in organ assembly and tissue engineeringXenopus Pkdcc1 and Pkdcc2 Are Two New Tyrosine Kinases Involved in the Regulation of JNK Dependent Wnt/PCP Signaling PathwayMechanics of blastopore closure during amphibian gastrulation.Regulation of Xenopus gastrulation by ErbB signaling.A biomechanical analysis of ventral furrow formation in the Drosophila melanogaster embryoThe mechanics of metastasis: insights from a computational modelInvagination of Ectodermal Placodes Is Driven by Cell Intercalation-Mediated Contraction of the Suprabasal Tissue CanopyForce production and mechanical accommodation during convergent extension.Engineering three-dimensional stem cell morphogenesis for the development of tissue models and scalable regenerative therapeutics.Polarity and cell fate specification in the control of Caenorhabditis elegans gastrulationEmergent complexity of the cytoskeleton: from single filaments to tissueSymmetry breaking, germ layer specification and axial organisation in aggregates of mouse embryonic stem cellsThe interplay between cell signalling and mechanics in developmental processesDistinct shape-shifting regimes of bowl-shaped cell sheets - embryonic inversion in the multicellular green alga Pleodorina.Emergent properties during dorsal closure in Drosophila morphogenesisMechanical basis of morphogenesis and convergent evolution of spiny seashellsVariation in the schedules of somite and neural development in frogsCell ingression and apical shape oscillations during dorsal closure in DrosophilaActomyosin purse strings: renewable resources that make morphogenesis robust and resilientUpregulation of forces and morphogenic asymmetries in dorsal closure during Drosophila developmentWNT5a is required for normal ovarian follicle development and antagonizes gonadotropin responsiveness in granulosa cells by suppressing canonical WNT signaling.The cytoplasmic tyrosine kinase Arg regulates gastrulation via control of actin organization.The bending of cell sheets--from folding to rolling.Early development of Ensatina eschscholtzii: an amphibian with a large, yolky eggConvergence and extension at gastrulation require a myosin IIB-dependent cortical actin network.MOTION FLOW ESTIMATION FROM IMAGE SEQUENCES WITH APPLICATIONS TO BIOLOGICAL GROWTH AND MOTILITY.Cell rearrangement and cell division during the tissue level morphogenesis of evaginating Drosophila imaginal discsThe missing dimension in developmental biology education.Emergent patterns of growth controlled by multicellular form and mechanics.Anisotropy of cell adhesive microenvironment governs cell internal organization and orientation of polarityPI3K and Erk MAPK mediate ErbB signaling in Xenopus gastrulation.Vascular sprout formation entails tissue deformations and VE-cadherin-dependent cell-autonomous motility.
P2860
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P2860
description
2003 nî lūn-bûn
@nan
2003 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2003 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
2003年の論文
@ja
2003年論文
@yue
2003年論文
@zh-hant
2003年論文
@zh-hk
2003年論文
@zh-mo
2003年論文
@zh-tw
2003年论文
@wuu
name
How we are shaped: the biomechanics of gastrulation.
@ast
How we are shaped: the biomechanics of gastrulation.
@en
type
label
How we are shaped: the biomechanics of gastrulation.
@ast
How we are shaped: the biomechanics of gastrulation.
@en
prefLabel
How we are shaped: the biomechanics of gastrulation.
@ast
How we are shaped: the biomechanics of gastrulation.
@en
P1433
P1476
How we are shaped: the biomechanics of gastrulation.
@en
P2093
Lance A Davidson
Ray Keller
P304
P356
10.1046/J.1432-0436.2003.710301.X
P577
2003-04-01T00:00:00Z