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Trends in Cardiovascular Medicine
|
July 12, 2011
The atrioventricular node: origin, development, and genetic program
Martijn L Bakker, Antoon F M Moorman, Vincent M Christoffels
Journal of Cardiovascular Pharmacology
|
May 28, 2010
The cardiac pacemaker and conduction system develops from embryonic myocardium that retains its primitive phenotype
Martijn L Bakker, Vincent M Christoffels, Antoon F M Moorman
Plos One
|
October 25, 2014
Transcriptional repressor Tbx3 is required for the hormone-sensing cell lineage in mammary epithelium
Kamini Kunasegaran, Victor Ho, Ted H-T Chang, et al.
Circulation Research
|
May 10, 2008
Transcription factor Tbx3 is required for the specification of the atrioventricular conduction system
Martijn L Bakker, Bastiaan J Boukens, Mathilda T M Mommersteeg, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
December 29, 2011
Lethal arrhythmias in Tbx3-deficient mice reveal extreme dosage sensitivity of cardiac conduction system function and homeostasis
Deborah U Frank, Kandis L Carter, Kirk R Thomas, et al.
Circulation Research
|
June 6, 2009
Gene expression profiling of the forming atrioventricular node using a novel tbx3-based node-specific transgenic reporter
Thomas Horsthuis, Henk P J Buermans, Janynke F Brons, et al.
The Journal of Clinical Investigation
|
June 19, 2012
Genetic variation in T-box binding element functionally affects SCN5A/SCN10A enhancer
Malou van den Boogaard, L Y Elaine Wong, Federico Tessadori, et al.
Genes & Development
|
May 3, 2007
Tbx3 controls the sinoatrial node gene program and imposes pacemaker function on the atria
Willem M H Hoogaars, Angela Engel, Janynke F Brons, et al.
Cardiovascular Research
|
March 16, 2012
T-box transcription factor TBX3 reprogrammes mature cardiac myocytes into pacemaker-like cells
Martijn L Bakker, Gerard J J Boink, Bas J Boukens, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 9) with videos related to
Sort By:
Page
of 1
Trends in Cardiovascular Medicine
|
July 12, 2011
The atrioventricular node: origin, development, and genetic program
Martijn L Bakker, Antoon F M Moorman, Vincent M Christoffels
Journal of Cardiovascular Pharmacology
|
May 28, 2010
The cardiac pacemaker and conduction system develops from embryonic myocardium that retains its primitive phenotype
Martijn L Bakker, Vincent M Christoffels, Antoon F M Moorman
Plos One
|
October 25, 2014
Transcriptional repressor Tbx3 is required for the hormone-sensing cell lineage in mammary epithelium
Kamini Kunasegaran, Victor Ho, Ted H-T Chang, et al.
Circulation Research
|
May 10, 2008
Transcription factor Tbx3 is required for the specification of the atrioventricular conduction system
Martijn L Bakker, Bastiaan J Boukens, Mathilda T M Mommersteeg, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
December 29, 2011
Lethal arrhythmias in Tbx3-deficient mice reveal extreme dosage sensitivity of cardiac conduction system function and homeostasis
Deborah U Frank, Kandis L Carter, Kirk R Thomas, et al.
Circulation Research
|
June 6, 2009
Gene expression profiling of the forming atrioventricular node using a novel tbx3-based node-specific transgenic reporter
Thomas Horsthuis, Henk P J Buermans, Janynke F Brons, et al.
The Journal of Clinical Investigation
|
June 19, 2012
Genetic variation in T-box binding element functionally affects SCN5A/SCN10A enhancer
Malou van den Boogaard, L Y Elaine Wong, Federico Tessadori, et al.
Genes & Development
|
May 3, 2007
Tbx3 controls the sinoatrial node gene program and imposes pacemaker function on the atria
Willem M H Hoogaars, Angela Engel, Janynke F Brons, et al.
Cardiovascular Research
|
March 16, 2012
T-box transcription factor TBX3 reprogrammes mature cardiac myocytes into pacemaker-like cells
Martijn L Bakker, Gerard J J Boink, Bas J Boukens, et al.
Page
of 1