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BMC Developmental Biology|January 25, 2008
MyoD- and nerve-dependent maintenance of MyoD expression in mature muscle fibres acts through the DRR/PRR elementSophie B Chargé, Andrew S Brack, Stéphanie A Bayol, et al.
Developmental Biology|April 30, 2023
Slow myosin heavy chain 1 is required for slow myofibril and muscle fibre growth but not for myofibril initiationHoi-Ting A Hau, Jeffrey J Kelu, Julien Ochala, et al.
BMC Musculoskeletal Disorders|March 15, 2005
Analyses of the differentiation potential of satellite cells from myoD-/-, mdx, and PMP22 C22 miceMarion M Schuierer, Christopher J Mann, Heidi Bildsoe, et al.
Plos One|July 11, 2013
Notch signalling is required for the formation of structurally stable muscle fibres in zebrafishSusana Pascoal, Joana Esteves de Lima, Jonathan D Leslie, et al.
Developmental Biology|July 4, 2012
Zebrafish Mef2ca and Mef2cb are essential for both first and second heart field cardiomyocyte differentiationYaniv Hinits, Luyuan Pan, Charline Walker, et al.
Methods in Molecular Biology (Clifton, N.J.)|March 30, 2023
Skeletal Muscle Regeneration in ZebrafishTapan G Pipalia, Sami H A Sultan, Jana Koth, et al.
Development (Cambridge, England)|June 18, 2004
Hedgehog regulation of superficial slow muscle fibres in Xenopus and the evolution of tetrapod trunk myogenesisAnnalisa Grimaldi, Gianluca Tettamanti, Benjamin L Martin, et al.
BMC Developmental Biology|July 9, 2004
Hedgehog can drive terminal differentiation of amniote slow skeletal muscleXiaopeng Li, Christopher S Blagden, Heidi Bildsoe, et al.
Biology Open|August 16, 2022
Clonal behaviour of myogenic precursor cells throughout the vertebrate lifespanSimon M Hughes, Roberta C Escaleira, Kees Wanders, et al.
Nature Communications|October 14, 2018
Myogenin promotes myocyte fusion to balance fibre number and sizeMassimo Ganassi, Sara Badodi, Huascar Pedro Ortuste Quiroga, et al.
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