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Journal of Developmental Biology|April 5, 2018
Hox Genes in Cardiovascular Development and DiseasesMarine Roux, Stéphane ZaffranDevelopmental Biology|August 19, 2015
Hoxb1 regulates proliferation and differentiation of second heart field progenitors in pharyngeal mesoderm and genetically interacts with Hoxa1 during cardiac outflow tract developmentMarine Roux, Brigitte Laforest, Mario Capecchi, et al.Mechanisms of Development|December 14, 2016
Hoxa1 and Hoxb1 are required for pharyngeal arch artery developmentMarine Roux, Brigitte Laforest, Nathalie Eudes, et al.Developmental Biology|March 10, 2011
Hox genes define distinct progenitor sub-domains within the second heart fieldNicolas Bertrand, Marine Roux, Lucile Ryckebüsch, et al.Mechanisms of Development|December 24, 2016
Mechanisms of retinoic acid signaling during cardiogenesisSonia Stefanovic, Stéphane ZaffranCirculation Research|September 21, 2002
Early signals in cardiac developmentStéphane Zaffran, Manfred FraschBiochemical and Biophysical Research Communications|July 12, 2005
The homeodomain of Tinman mediates homo- and heterodimerization of NK proteinsStéphane Zaffran, Manfred FraschDifferentiation; Research in Biological Diversity|April 24, 2012
New developments in the second heart fieldStéphane Zaffran, Robert G KellyArchives of Cardiovascular Diseases|February 24, 2009
Genetics and embryological mechanisms of congenital heart diseasesFanny Bajolle, Stéphane Zaffran, Damien BonnetMethods in Molecular Biology (Clifton, N.J.)|August 25, 2014
Genetic lineage tracing analysis of anterior Hox expressing cellsBrigitte Laforest, Nicolas Bertrand, Stéphane ZaffranPageof 11