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The International Journal of Developmental Biology|April 5, 2018
Craniofacial development: discoveries made in the chicken embryoJohn Abramyan, Joy M RichmanThe International Journal of Developmental Biology|July 12, 2017
Interactions among gibberellins, brassinosteroids and genes regulate stomatal development in the Arabidopsis hypocotylDiego González, Sonia Fuentes, Laura SernaThe International Journal of Developmental Biology|July 12, 2017
Apolipoprotein C-I mediates Wnt/Ctnnb1 signaling during neural border formation and is required for neural crest developmentChika Yokota, Carolina Åstrand, Shuji Takahashi, et al.The International Journal of Developmental Biology|December 1, 1993
Behavior of endodermal "button cells" during metamorphosis of ascidian larvaeC Sotgia, U Fascio, G Ortolani, et al.The International Journal of Developmental Biology|December 1, 1993
Caudalization by retinoic acid is correlated with inhibition of cell population growth and expansion of chick blastoderms cultured in vitroS P Modak, S K Ghatpande, R K Rane, et al.The International Journal of Developmental Biology|December 1, 1993
An appraisal of the developmental importance of polyamine changes in early Xenopus embryosH B Osborne, P Cormier, O Lorillon, et al.The International Journal of Developmental Biology|March 1, 1994
Co-expression of laminin and a 67 kDa laminin-binding protein in teratocarcinoma embryoid bodiesF J Unda, M Garcia-Sanz, R Atencia, et al.The International Journal of Developmental Biology|March 1, 1994
Regulation of microtubule dynamics by microtubule-associated protein expression and phosphorylation during neuronal developmentJ Avila, J Domínguez, J Díaz-NidoThe International Journal of Developmental Biology|March 1, 1994
Germ-line expression of a functional LINE from Drosophila melanogaster: fine characterization allows for potential investigations of trans-regulatorsC Tatout, M Docquier, P Lachaume, et al.The International Journal of Developmental Biology|March 1, 1994
The four animal blastomeres of the eight-cell stage of Xenopus laevis are intrinsically capable of differentiating into dorsal mesodermal derivativesH GrunzPageof 310