apical constriction
Pax6 dependent Shroom3 expression regulates apical constriction during lens placode invagination
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Nectin 2 and N cadherin interact through extracellular domains and induce apical accumulation of F actin in apical constriction of Xenopus neural tube morphogenesis
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The RhoGEF protein Plekhg5 regulates apical constriction of bottle cells during gastrulation
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The accuracy of the auto-stop function of different endodontic devices in detecting the apical constriction
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Modulation of apical constriction by Wnt signaling is required for lung epithelial shape transition
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A Trio RhoA Shroom3 pathway is required for apical constriction and epithelial invagination
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Distance of Apical Constriction to the Apical Foramen in Extracted Lower First Premolar Teeth Assisted by Per Apical Radio-graph in Kerbala City
6
Bazooka inhibits aPKC to limit antagonism of actomyosin networks during amnioserosa apical constriction
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The PAR complex regulates pulsed actomyosin contractions during amnioserosa apical constriction in Drosophila
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Fgfr Ras MAPK signaling is required for apical constriction via apical positioning of Rho associated kinase during mechanosensory organ formation
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Comparison of the accuracy of root ZX mini and Raypex 6 in detecting apical constriction in human permanent maxillary anterior teeth in the presence of various irrigants using Stereomicroscope: An In Vitro study
91
Apical constriction initiates new bud formation during monopodial branching of the embryonic chicken lung
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Distinct intracellular Ca2+ dynamics regulate apical constriction and differentially contribute to neural tube closure
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Vangl2 cooperates with Rab11 and Myosin V to regulate apical constriction during vertebrate gastrulation
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Apical constriction: themes and variations on a cellular mechanism driving morphogenesis
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Eph Ephrin signaling and focal adhesion kinase regulate actomyosin dependent apical constriction of ciliary band cells
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Apical constriction is driven by a pulsatile apical myosin network in delaminating Drosophila neuroblasts
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Rho kinase-dependent apical constriction counteracts M-phase apical expansion to enable mouse neural tube closure
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p120 catenin dependent junctional recruitment of Shroom3 is required for apical constriction during lens pit morphogenesis
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Fat1 interacts with Fat4 to regulate neural tube closure, neural progenitor proliferation and apical constriction during mouse brain development
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