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Zebrafish|April 2, 2008
Investigator profile. An interview with Hazel Sive, Ph.D. Interview by Vicki GlaserHazel SiveDisease Models & Mechanisms|March 2, 2011
'Model' or 'tool'? New definitions for translational researchHazel SiveMethods in Molecular Biology (Clifton, N.J.)|August 2, 2011
Keeping two animal systems in one lab - a frog plus fish case studyHazel SiveJournal of Visualized Experiments : Jove|April 3, 2009
Live imaging of the zebrafish embryonic brain by confocal microscopyEllie Graeden, Hazel SiveDevelopment (Cambridge, England)|February 12, 2010
Epithelial relaxation mediated by the myosin phosphatase regulator Mypt1 is required for brain ventricle lumen expansion and hindbrain morphogenesisJennifer H Gutzman, Hazel SiveJournal of Visualized Experiments : Jove|November 7, 2012
An assay for permeability of the zebrafish embryonic neuroepitheliumJessica T Chang, Hazel SiveDevelopment (Cambridge, England)|July 2, 2003
vhnf1 and Fgf signals synergize to specify rhombomere identity in the zebrafish hindbrainElizabeth L Wiellette, Hazel SiveMechanisms of Development|August 26, 2004
Strategies of vertebrate neurulation and a re-evaluation of teleost neural tube formationLaura Anne Lowery, Hazel SiveDevelopment (Cambridge, England)|March 25, 2005
Initial formation of zebrafish brain ventricles occurs independently of circulation and requires the nagie oko and snakehead/atp1a1a.1 gene productsLaura Anne Lowery, Hazel SiveJournal of Visualized Experiments : Jove|December 29, 2012
Manual drainage of the zebrafish embryonic brain ventriclesJessica T Chang, Hazel SivePageof 6