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School of Biological Sciences
Robert J. Bryson-Richardson has not added Biography.
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The structure and evolution of the melanocortin and MCH receptors in fish and mammals.
Genomics Feb, 2003 | Pubmed ID: 12620396
Sequence characterization of teleost fish melanocortin receptors.
Annals of the New York Academy of Sciences Jun, 2003 | Pubmed ID: 12851332
Dystrophin is required for the formation of stable muscle attachments in the zebrafish embryo.
Development (Cambridge, England) Dec, 2003 | Pubmed ID: 14573513
Cadherin-mediated differential cell adhesion controls slow muscle cell migration in the developing zebrafish myotome.
Developmental cell Dec, 2003 | Pubmed ID: 14667409
Large-scale analysis of gene structure in rhodopsin-like GPCRs: evidence for widespread loss of an ancient intron.
Gene Aug, 2004 | Pubmed ID: 15302402
Met and Hgf signaling controls hypaxial muscle and lateral line development in the zebrafish.
Development (Cambridge, England) Oct, 2004 | Pubmed ID: 15342468
Developmentally restricted actin-regulatory molecules control morphogenetic cell movements in the zebrafish gastrula.
Current biology : CB Sep, 2004 | Pubmed ID: 15380064
Optical projection tomography for spatio-temporal analysis in the zebrafish.
Methods in cell biology , 2004 | Pubmed ID: 15602870
Analysis of protein sequence and interaction data for candidate disease gene prediction.
Nucleic acids research , 2006 | Pubmed ID: 17020920
The eIF4G-homolog p97 can activate translation independent of caspase cleavage.
RNA (New York, N.Y.) Mar, 2007 | Pubmed ID: 17237356
Whole-somite rotation generates muscle progenitor cell compartments in the developing zebrafish embryo.
Developmental cell Feb, 2007 | Pubmed ID: 17276339
The zebrafish candyfloss mutant implicates extracellular matrix adhesion failure in laminin alpha2-deficient congenital muscular dystrophy.
Proceedings of the National Academy of Sciences of the United States of America Apr, 2007 | Pubmed ID: 17438294
FishNet: an online database of zebrafish anatomy.
BMC biology , 2007 | Pubmed ID: 17705855
The genetics of vertebrate myogenesis.
Nature reviews. Genetics Aug, 2008 | Pubmed ID: 18636072
The zebrafish dystrophic mutant softy maintains muscle fibre viability despite basement membrane rupture and muscle detachment.
Development (Cambridge, England) Oct, 2009 | Pubmed ID: 19736328
Zebrafish prox1b mutants develop a lymphatic vasculature, and prox1b does not specifically mark lymphatic endothelial cells.
PloS one , 2011 | Pubmed ID: 22216143
Cardiac-phase filtering in intracardiac particle image velocimetry.
Journal of biomedical optics Mar, 2012 | Pubmed ID: 22502565
Characterization and investigation of zebrafish models of filamin-related myofibrillar myopathy.
Human molecular genetics Sep, 2012 | Pubmed ID: 22706277
The Zebrafish Anatomy Portal: a novel integrated resource to facilitate zebrafish research.
Developmental biology Dec, 2012 | Pubmed ID: 22981871
Mutations in KLHL40 are a frequent cause of severe autosomal-recessive nemaline myopathy.
American journal of human genetics Jul, 2013 | Pubmed ID: 23746549
In vivo wall shear measurements within the developing zebrafish heart.
PloS one , 2013 | Pubmed ID: 24124507
The quail anatomy portal.
Database : the journal of biological databases and curation , 2014 | Pubmed ID: 24715219
Monash University
Adam Parslow1,
Albert Cardona2,
Robert J. Bryson-Richardson1
1School of Biological Sciences, Monash University,
2Janelia Farm Research Campus, Howard Hughes Medical Institute
Tamar E. Sztal*,1,
Avnika A. Ruparelia*,1,
Caitlin Williams1,
1School of Biological Sciences, Monash University
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