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Benjamin M Hogan

Showing results (41-50 of 99) with videos related to

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Cell Reports|December 15, 2015
Vegfc Regulates Bipotential Precursor Division and Prox1 Expression to Promote Lymphatic Identity in ZebrafishKatarzyna Koltowska, Anne Karine Lagendijk, Cathy Pichol-Thievend, et al.
Developmental Dynamics : an Official Publication of the American Association of Anatomists|February 26, 2019
Myosin Vb is required for correct trafficking of N-cadherin and cardiac chamber ballooningDaniela R Grassini, Jason da Silva, Thomas E Hall, et al.
Biology Open|November 30, 2016
Utilising polymorphisms to achieve allele-specific genome editing in zebrafishSamuel J Capon, Gregory J Baillie, Neil I Bower, et al.
Developmental Biology|December 8, 2004
Zebrafish gcm2 is required for gill filament budding from pharyngeal ectodermBenjamin M Hogan, Michael P Hunter, Andrew C Oates, et al.
Nature Communications|September 2, 2018
Junction-based lamellipodia drive endothelial cell rearrangements in vivo via a VE-cadherin-F-actin based oscillatory cell-cell interactionIlkka Paatero, Loïc Sauteur, Minkyoung Lee, et al.
Cell Reports|June 22, 2022
mafba and mafbb differentially regulate lymphatic endothelial cell migration in topographically distinct mannersHannah Arnold, Virginia Panara, Melina Hußmann, et al.
Current Biology : CB|March 11, 2006
Specification of the primitive myeloid precursor pool requires signaling through Alk8 in zebrafishBenjamin M Hogan, Judith E Layton, Ujwal J Pyati, et al.
Elife|May 1, 2019
Yap1 promotes sprouting and proliferation of lymphatic progenitors downstream of Vegfc in the zebrafish trunkLin Grimm, Hiroyuki Nakajima, Smrita Chaudhury, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|March 23, 2013
Sox18 genetically interacts with VegfC to regulate lymphangiogenesis in zebrafishSolei Cermenati, Silvia Moleri, Christine Neyt, et al.
NPJ Regenerative Medicine|August 28, 2019
Vegfc/d-dependent regulation of the lymphatic vasculature during cardiac regeneration is influenced by injury contextCéline J Vivien, Cathy Pichol-Thievend, Choon Boon Sim, et al.
Pageof 10

Showing results (41-50 of 99) with videos related to

Sort By:
Pageof 10
Cell Reports|December 15, 2015
Vegfc Regulates Bipotential Precursor Division and Prox1 Expression to Promote Lymphatic Identity in ZebrafishKatarzyna Koltowska, Anne Karine Lagendijk, Cathy Pichol-Thievend, et al.
Developmental Dynamics : an Official Publication of the American Association of Anatomists|February 26, 2019
Myosin Vb is required for correct trafficking of N-cadherin and cardiac chamber ballooningDaniela R Grassini, Jason da Silva, Thomas E Hall, et al.
Biology Open|November 30, 2016
Utilising polymorphisms to achieve allele-specific genome editing in zebrafishSamuel J Capon, Gregory J Baillie, Neil I Bower, et al.
Developmental Biology|December 8, 2004
Zebrafish gcm2 is required for gill filament budding from pharyngeal ectodermBenjamin M Hogan, Michael P Hunter, Andrew C Oates, et al.
Nature Communications|September 2, 2018
Junction-based lamellipodia drive endothelial cell rearrangements in vivo via a VE-cadherin-F-actin based oscillatory cell-cell interactionIlkka Paatero, Loïc Sauteur, Minkyoung Lee, et al.
Cell Reports|June 22, 2022
mafba and mafbb differentially regulate lymphatic endothelial cell migration in topographically distinct mannersHannah Arnold, Virginia Panara, Melina Hußmann, et al.
Current Biology : CB|March 11, 2006
Specification of the primitive myeloid precursor pool requires signaling through Alk8 in zebrafishBenjamin M Hogan, Judith E Layton, Ujwal J Pyati, et al.
Elife|May 1, 2019
Yap1 promotes sprouting and proliferation of lymphatic progenitors downstream of Vegfc in the zebrafish trunkLin Grimm, Hiroyuki Nakajima, Smrita Chaudhury, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|March 23, 2013
Sox18 genetically interacts with VegfC to regulate lymphangiogenesis in zebrafishSolei Cermenati, Silvia Moleri, Christine Neyt, et al.
NPJ Regenerative Medicine|August 28, 2019
Vegfc/d-dependent regulation of the lymphatic vasculature during cardiac regeneration is influenced by injury contextCéline J Vivien, Cathy Pichol-Thievend, Choon Boon Sim, et al.
Pageof 10