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Zebrafish|January 22, 2021
Cellular and Molecular Characterization of the Effects of the Zebrafish Embryo Genotyper ProtocolAlon M Douek, Emma I Klein, Jan Kaslin, et al.The Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|February 17, 2024
Skeletal Muscle Aging: Lessons From TeleostsTuyen K Quach, Megan F Taylor, Peter D Currie, et al.Plos One|January 10, 2013
Nerve growth factor stimulates cardiac regeneration via cardiomyocyte proliferation in experimental heart failureNicholas T Lam, Peter D Currie, Graham J Lieschke, et al.Plos Genetics|February 11, 2022
Genetic dissection of novel myopathy models reveals a role of CapZα and Leiomodin 3 during myofibril elongationJoachim Berger, Silke Berger, Yu Shan G Mok, et al.The Journal of Comparative Neurology|February 9, 2017
In vivo expression of Nurr1/Nr4a2a in developing retinal amacrine subtypes in zebrafish Tg(nr4a2a:eGFP) transgenicsLiana Goodings, Jie He, Alasdair J Wood, et al.Disease Models & Mechanisms|October 8, 2014
Loss of Tropomodulin4 in the zebrafish mutant träge causes cytoplasmic rod formation and muscle weakness reminiscent of nemaline myopathyJoachim Berger, Hakan Tarakci, Silke Berger, et al.Plos One|January 5, 2012
Zebrafish prox1b mutants develop a lymphatic vasculature, and prox1b does not specifically mark lymphatic endothelial cellsShijie Tao, Merlijn Witte, Robert J Bryson-Richardson, et al.Disease Models & Mechanisms|August 30, 2020
Machine learning discriminates a movement disorder in a zebrafish model of Parkinson's diseaseGideon L Hughes, Michael A Lones, Matthew Bedder, et al.Development (Cambridge, England)|April 27, 2019
Muscle precursor cell movements in zebrafish are dynamic and require Six family genesJared C Talbot, Emily M Teets, Dhanushika Ratnayake, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|June 1, 2012
Fgf-dependent glial cell bridges facilitate spinal cord regeneration in zebrafishYona Goldshmit, Tamar E Sztal, Patricia R Jusuf, et al.Pageof 14