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Caroline E Burns

Showing results (11-20 of 39) with videos related to

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Frontiers in Cell and Developmental Biology|February 18, 2022
Ruvbl2 Suppresses Cardiomyocyte Proliferation During Zebrafish Heart Development and RegenerationMichka Sharpe, Juan Manuel González-Rosa, Felicia Wranitz, et al.
Experimental Hematology|November 29, 2011
Hematopoietic defects in rps29 mutant zebrafish depend upon p53 activationAlison M Taylor, Jessica M Humphries, Richard M White, et al.
Developmental Cell|February 28, 2018
Myocardial Polyploidization Creates a Barrier to Heart Regeneration in ZebrafishJuan Manuel González-Rosa, Michka Sharpe, Dorothy Field, et al.
Disease Models & Mechanisms|January 31, 2022
Latent TGFβ-binding proteins 1 and 3 protect the larval zebrafish outflow tract from aneurysmal dilatationMaryline Abrial, Sandeep Basu, Mengmeng Huang, et al.
Cell Reports|July 27, 2017
TGF-β Signaling Is Necessary and Sufficient for Pharyngeal Arch Artery Angioblast FormationMaryline Abrial, Noëlle Paffett-Lugassy, Spencer Jeffrey, et al.
Development (Cambridge, England)|October 25, 2017
Unique developmental trajectories and genetic regulation of ventricular and outflow tract progenitors in the zebrafish second heart fieldNoelle Paffett-Lugassy, Natasha Novikov, Spencer Jeffrey, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 30, 2014
Notch signaling regulates cardiomyocyte proliferation during zebrafish heart regenerationLong Zhao, Asya L Borikova, Raz Ben-Yair, et al.
Nature Cell Biology|October 29, 2013
Heart field origin of great vessel precursors relies on nkx2.5-mediated vasculogenesisNoëlle Paffett-Lugassy, Reena Singh, Kathleen R Nevis, et al.
Development (Cambridge, England)|August 21, 2019
H3K27me3-mediated silencing of structural genes is required for zebrafish heart regenerationRaz Ben-Yair, Vincent L Butty, Michele Busby, et al.
Development (Cambridge, England)|May 13, 2010
The miR-143-adducin3 pathway is essential for cardiac chamber morphogenesisDekker C Deacon, Kathleen R Nevis, Timothy J Cashman, et al.
Pageof 4

Showing results (11-20 of 39) with videos related to

Sort By:
Pageof 4
Frontiers in Cell and Developmental Biology|February 18, 2022
Ruvbl2 Suppresses Cardiomyocyte Proliferation During Zebrafish Heart Development and RegenerationMichka Sharpe, Juan Manuel González-Rosa, Felicia Wranitz, et al.
Experimental Hematology|November 29, 2011
Hematopoietic defects in rps29 mutant zebrafish depend upon p53 activationAlison M Taylor, Jessica M Humphries, Richard M White, et al.
Developmental Cell|February 28, 2018
Myocardial Polyploidization Creates a Barrier to Heart Regeneration in ZebrafishJuan Manuel González-Rosa, Michka Sharpe, Dorothy Field, et al.
Disease Models & Mechanisms|January 31, 2022
Latent TGFβ-binding proteins 1 and 3 protect the larval zebrafish outflow tract from aneurysmal dilatationMaryline Abrial, Sandeep Basu, Mengmeng Huang, et al.
Cell Reports|July 27, 2017
TGF-β Signaling Is Necessary and Sufficient for Pharyngeal Arch Artery Angioblast FormationMaryline Abrial, Noëlle Paffett-Lugassy, Spencer Jeffrey, et al.
Development (Cambridge, England)|October 25, 2017
Unique developmental trajectories and genetic regulation of ventricular and outflow tract progenitors in the zebrafish second heart fieldNoelle Paffett-Lugassy, Natasha Novikov, Spencer Jeffrey, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 30, 2014
Notch signaling regulates cardiomyocyte proliferation during zebrafish heart regenerationLong Zhao, Asya L Borikova, Raz Ben-Yair, et al.
Nature Cell Biology|October 29, 2013
Heart field origin of great vessel precursors relies on nkx2.5-mediated vasculogenesisNoëlle Paffett-Lugassy, Reena Singh, Kathleen R Nevis, et al.
Development (Cambridge, England)|August 21, 2019
H3K27me3-mediated silencing of structural genes is required for zebrafish heart regenerationRaz Ben-Yair, Vincent L Butty, Michele Busby, et al.
Development (Cambridge, England)|May 13, 2010
The miR-143-adducin3 pathway is essential for cardiac chamber morphogenesisDekker C Deacon, Kathleen R Nevis, Timothy J Cashman, et al.
Pageof 4