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Developmental Biology|November 1, 1986
Cell proliferation in the ectoderm of the Xenopus embryo: development of substratum requirements for cytokinesisR WinklbauerProgress in Neurobiology|January 1, 1989
Development of the lateral line system in XenopusR WinklbauerDevelopmental Dynamics : an Official Publication of the American Association of Anatomists|July 22, 1998
Conditions for fibronectin fibril formation in the early Xenopus embryoR WinklbauerDevelopmental Biology|January 11, 2002
Mechanisms of mesendoderm internalization in the Xenopus gastrula: lessons from the ventral sideH Ibrahim, R WinklbauerJournal of Cell Science|April 1, 1995
Fibronectin fibril growth in the extracellular matrix of the Xenopus embryoR Winklbauer, C StoltzDevelopment (Cambridge, England)|July 20, 1999
Vegetal rotation, a new gastrulation movement involved in the internalization of the mesoderm and endoderm in XenopusR Winklbauer, M SchürfeldJournal of Embryology and Experimental Morphology|August 1, 1983
Development of the lateral line system in Xenopus laevis. II. Cell multiplication and organ formation in the supraorbital systemR Winklbauer, P HausenJournal of Embryology and Experimental Morphology|August 1, 1983
Development of the lateral line system in Xenopus laevis. I. Normal development and cell movement in the supraorbital systemR Winklbauer, P HausenJournal of Embryology and Experimental Morphology|August 1, 1985
Development of the lateral line system in Xenopus laevis. IV. Pattern formation in the supraorbital systemR Winklbauer, P HausenJournal of Embryology and Experimental Morphology|August 1, 1985
Development of the lateral line system in Xenopus laevis. III. Development of the supraorbital system in triploid embryos and larvaeR Winklbauer, P HausenPageof 77