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The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
October 5, 2012
Biasing amacrine subtypes in the Atoh7 lineage through expression of Barhl2
Patricia R Jusuf, Shahad Albadri, Alessio Paolini, et al.
Human Molecular Genetics
|
June 28, 2013
Chemical genetics unveils a key role of mitochondrial dynamics, cytochrome c release and IP3R activity in muscular dystrophy
Jean Giacomotto, Nicolas Brouilly, Ludivine Walter, et al.
Neural Development
|
November 19, 2018
Different Fgfs have distinct roles in regulating neurogenesis after spinal cord injury in zebrafish
Yona Goldshmit, Jean Kitty K Y Tang, Ashley L Siegel, et al.
Developmental Cell
|
December 12, 2003
Cadherin-mediated differential cell adhesion controls slow muscle cell migration in the developing zebrafish myotome
Fernando Cortés, David Daggett, Robert J Bryson-Richardson, et al.
Development (Cambridge, England)
|
September 3, 2004
Met and Hgf signaling controls hypaxial muscle and lateral line development in the zebrafish
Lynn Haines, Christine Neyt, Philippe Gautier, et al.
Brain and Behavior
|
April 1, 2014
Fgf2 improves functional recovery-decreasing gliosis and increasing radial glia and neural progenitor cells after spinal cord injury
Yona Goldshmit, Frisca Frisca, Alexander R Pinto, et al.
Developmental Biology
|
September 5, 2025
Redundant and novel functions of scube genes during zebrafish development
Quoc Duy Tran, Ivana Mirkovic, Lee B Miles, et al.
Developmental Biology
|
April 22, 2006
Scube2 mediates Hedgehog signalling in the zebrafish embryo
Georgina E Hollway, John Maule, Philippe Gautier, et al.
Current Biology : CB
|
September 24, 2004
Developmentally restricted actin-regulatory molecules control morphogenetic cell movements in the zebrafish gastrula
David F Daggett, Catherine A Boyd, Philippe Gautier, et al.
Human Molecular Genetics
|
May 13, 2005
Zebrafish as a model for caveolin-associated muscle disease; caveolin-3 is required for myofibril organization and muscle cell patterning
Susan J Nixon, Jeremy Wegner, Charles Ferguson, et al.
Page
of 12
Search research articles
Search
Showing results (71-80 of 113) with videos related to
Sort By:
Page
of 12
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
October 5, 2012
Biasing amacrine subtypes in the Atoh7 lineage through expression of Barhl2
Patricia R Jusuf, Shahad Albadri, Alessio Paolini, et al.
Human Molecular Genetics
|
June 28, 2013
Chemical genetics unveils a key role of mitochondrial dynamics, cytochrome c release and IP3R activity in muscular dystrophy
Jean Giacomotto, Nicolas Brouilly, Ludivine Walter, et al.
Neural Development
|
November 19, 2018
Different Fgfs have distinct roles in regulating neurogenesis after spinal cord injury in zebrafish
Yona Goldshmit, Jean Kitty K Y Tang, Ashley L Siegel, et al.
Developmental Cell
|
December 12, 2003
Cadherin-mediated differential cell adhesion controls slow muscle cell migration in the developing zebrafish myotome
Fernando Cortés, David Daggett, Robert J Bryson-Richardson, et al.
Development (Cambridge, England)
|
September 3, 2004
Met and Hgf signaling controls hypaxial muscle and lateral line development in the zebrafish
Lynn Haines, Christine Neyt, Philippe Gautier, et al.
Brain and Behavior
|
April 1, 2014
Fgf2 improves functional recovery-decreasing gliosis and increasing radial glia and neural progenitor cells after spinal cord injury
Yona Goldshmit, Frisca Frisca, Alexander R Pinto, et al.
Developmental Biology
|
September 5, 2025
Redundant and novel functions of scube genes during zebrafish development
Quoc Duy Tran, Ivana Mirkovic, Lee B Miles, et al.
Developmental Biology
|
April 22, 2006
Scube2 mediates Hedgehog signalling in the zebrafish embryo
Georgina E Hollway, John Maule, Philippe Gautier, et al.
Current Biology : CB
|
September 24, 2004
Developmentally restricted actin-regulatory molecules control morphogenetic cell movements in the zebrafish gastrula
David F Daggett, Catherine A Boyd, Philippe Gautier, et al.
Human Molecular Genetics
|
May 13, 2005
Zebrafish as a model for caveolin-associated muscle disease; caveolin-3 is required for myofibril organization and muscle cell patterning
Susan J Nixon, Jeremy Wegner, Charles Ferguson, et al.
Page
of 12