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Elife|December 13, 2024
Cell-autonomous timing drives the vertebrate segmentation clock's wave patternLaurel A Rohde, Arianne Bercowsky-Rama, Guillaume Valentin, et al.Development (Cambridge, England)|June 10, 2011
Evolutionary plasticity of segmentation clock networksAurélie J Krol, Daniela Roellig, Mary-Lee Dequéant, et al.Developmental Biology|February 6, 2007
Completing the set of h/E(spl) cyclic genes in zebrafish: her12 and her15 reveal novel modes of expression and contribute to the segmentation clockSunita S Shankaran, Dirk Sieger, Christian Schröter, et al.Developmental Biology|December 8, 2004
Zebrafish gcm2 is required for gill filament budding from pharyngeal ectodermBenjamin M Hogan, Michael P Hunter, Andrew C Oates, et al.Plos Biology|August 23, 2012
Topology and dynamics of the zebrafish segmentation clock core circuitChristian Schröter, Saúl Ares, Luis G Morelli, et al.Development (Cambridge, England)|March 1, 2015
Tbx6, Mesp-b and Ripply1 regulate the onset of skeletal myogenesis in zebrafishStefanie E Windner, Rosemarie A Doris, Chantal M Ferguson, et al.Developmental Biology|June 8, 2002
Zebrafish SPI-1 (PU.1) marks a site of myeloid development independent of primitive erythropoiesis: implications for axial patterningGraham J Lieschke, Andrew C Oates, Barry H Paw, et al.Proceedings of the National Academy of Sciences of the United States of America|July 24, 2021
Mechanotaxis directs Pseudomonas aeruginosa twitching motilityMarco J Kühn, Lorenzo Talà, Yuki F Inclan, et al.Elife|April 7, 2018
Segmentation of the zebrafish axial skeleton relies on notochord sheath cells and not on the segmentation clockLaura Lleras Forero, Rachna Narayanan, Leonie Fa Huitema, et al.Developmental Biology|March 6, 2003
Characterization of embryonic globin genes of the zebrafishAlison Brownlie, Candace Hersey, Andrew C Oates, et al.Pageof 8