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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.
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.
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