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Journal of Visualized Experiments : Jove
|
April 9, 2009
Zebrafish brain ventricle injection
Jennifer H Gutzman, Hazel Sive
Emerging Topics in Life Sciences
|
February 3, 2021
The extracellular matrix-myosin pathway in mechanotransduction: from molecule to tissue
Ionel Popa, Jennifer H Gutzman
Development (Cambridge, England)
|
February 12, 2010
Epithelial relaxation mediated by the myosin phosphatase regulator Mypt1 is required for brain ventricle lumen expansion and hindbrain morphogenesis
Jennifer H Gutzman, Hazel Sive
Developmental Biology
|
December 3, 2014
Non-muscle myosin IIA and IIB differentially regulate cell shape changes during zebrafish brain morphogenesis
Jennifer H Gutzman, Srishti U Sahu, Constance Kwas
Zebrafish
|
July 14, 2012
Efficient shRNA-mediated inhibition of gene expression in zebrafish
Gianluca De Rienzo, Jennifer H Gutzman, Hazel Sive
Developmental Biology
|
October 16, 2022
Laminin-111 mutant studies reveal a hierarchy within laminin-111 genes in their requirement for basal epithelial tissue folding
Elizabeth J Falat, Gabriella C Voit, Jennifer H Gutzman
The Journal of Steroid Biochemistry and Molecular Biology
|
March 18, 2004
Endogenous human prolactin and not exogenous human prolactin induces estrogen receptor alpha and prolactin receptor expression and increases estrogen responsiveness in breast cancer cells
Jennifer H Gutzman, Kristin K Miller, Linda A Schuler
G3 (Bethesda, Md.)
|
November 6, 2024
myh9b is a critical non-muscle myosin II encoding gene that interacts with myh9a and myh10 during zebrafish development in both compensatory and redundant pathways
Laura A Rolfs, Elizabeth J Falat, Jennifer H Gutzman
Anatomical Record (Hoboken, N.J. : 2007)
|
December 4, 2008
Characterization and classification of zebrafish brain morphology mutants
Laura Anne Lowery, Gianluca De Rienzo, Jennifer H Gutzman, et al.
Molecular Biology of the Cell
|
April 12, 2012
CSAP localizes to polyglutamylated microtubules and promotes proper cilia function and zebrafish development
Chelsea B Backer, Jennifer H Gutzman, Chad G Pearson, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 20) with videos related to
Sort By:
Page
of 2
Journal of Visualized Experiments : Jove
|
April 9, 2009
Zebrafish brain ventricle injection
Jennifer H Gutzman, Hazel Sive
Emerging Topics in Life Sciences
|
February 3, 2021
The extracellular matrix-myosin pathway in mechanotransduction: from molecule to tissue
Ionel Popa, Jennifer H Gutzman
Development (Cambridge, England)
|
February 12, 2010
Epithelial relaxation mediated by the myosin phosphatase regulator Mypt1 is required for brain ventricle lumen expansion and hindbrain morphogenesis
Jennifer H Gutzman, Hazel Sive
Developmental Biology
|
December 3, 2014
Non-muscle myosin IIA and IIB differentially regulate cell shape changes during zebrafish brain morphogenesis
Jennifer H Gutzman, Srishti U Sahu, Constance Kwas
Zebrafish
|
July 14, 2012
Efficient shRNA-mediated inhibition of gene expression in zebrafish
Gianluca De Rienzo, Jennifer H Gutzman, Hazel Sive
Developmental Biology
|
October 16, 2022
Laminin-111 mutant studies reveal a hierarchy within laminin-111 genes in their requirement for basal epithelial tissue folding
Elizabeth J Falat, Gabriella C Voit, Jennifer H Gutzman
The Journal of Steroid Biochemistry and Molecular Biology
|
March 18, 2004
Endogenous human prolactin and not exogenous human prolactin induces estrogen receptor alpha and prolactin receptor expression and increases estrogen responsiveness in breast cancer cells
Jennifer H Gutzman, Kristin K Miller, Linda A Schuler
G3 (Bethesda, Md.)
|
November 6, 2024
myh9b is a critical non-muscle myosin II encoding gene that interacts with myh9a and myh10 during zebrafish development in both compensatory and redundant pathways
Laura A Rolfs, Elizabeth J Falat, Jennifer H Gutzman
Anatomical Record (Hoboken, N.J. : 2007)
|
December 4, 2008
Characterization and classification of zebrafish brain morphology mutants
Laura Anne Lowery, Gianluca De Rienzo, Jennifer H Gutzman, et al.
Molecular Biology of the Cell
|
April 12, 2012
CSAP localizes to polyglutamylated microtubules and promotes proper cilia function and zebrafish development
Chelsea B Backer, Jennifer H Gutzman, Chad G Pearson, et al.
Page
of 2