AbstractObjectivesWe investigate the extent to which the electrocardiographic (ECG) properties of intact Scn5a+/− mice reproduce the corresponding clinical Brugada syndrome phenotype and use this model to investigate the role of conduction and repolarization abnormalities in the arrhythmogenic mechanism.Methods and ResultsThe ECGs were obtained from anesthetized wild-type and Scn5a+/− mice, before and after administration of the known pro- and antiarrhythmic agents flecainide and quinidine. The ECG intervals were measured and their dispersions calculated. Scn5a+/− hearts showed ventricular arrhythmias, ST elevation, and conduction disorders including increased QT dispersion, accentuated by flecainide. Quinidine did not cause ventricular arr...
AIM: To investigate the interacting effects of age and sex on electrocardiographic (ECG) features of...
Brugada Syndrome is a rare cardiac disease that leads to an increased risk of sudden cardiac death d...
Brugada syndrome is a heterogeneous genetic channelopathy that predisposes to ventricular arrhythmia...
AbstractObjectivesWe investigate the extent to which the electrocardiographic (ECG) properties of in...
AIM: To test a hypothesis attributing arrhythmia in Brugada Syndrome to right ventricular (RV) outfl...
A murine line with a haploinsufficiency in SCN5A has been used to model human Brugada syndrome: a di...
Brugada syndrome is an inherited, rare cardiac arrhythmogenic disease, associated with sudden cardia...
International audienceBoth gain- and loss-of-function mutations in the SCN5A gene, which encodes the...
Aim: Clinical observations suggest that alternans in action potential (AP) characteristics presages ...
International audienceAims: Loss-of-function of the cardiac sodium channel NaV1.5 is a common featur...
The initial series of experiments investigated the ventricles of Scn3b-/- hearts. These mice showed ...
Reductions in cardiac action potential wavelength, and the consequent wavebreak, have been implicate...
ObjectivesWe examined how repolarization and depolarization abnormalities contribute to the developm...
SCN5A mutations are associated with arrhythmia syndromes, including Brugada syndrome, long QT syndro...
ObjectivesThe aim of this study was to test the hypothesis that late potentials and fractionated ele...
AIM: To investigate the interacting effects of age and sex on electrocardiographic (ECG) features of...
Brugada Syndrome is a rare cardiac disease that leads to an increased risk of sudden cardiac death d...
Brugada syndrome is a heterogeneous genetic channelopathy that predisposes to ventricular arrhythmia...
AbstractObjectivesWe investigate the extent to which the electrocardiographic (ECG) properties of in...
AIM: To test a hypothesis attributing arrhythmia in Brugada Syndrome to right ventricular (RV) outfl...
A murine line with a haploinsufficiency in SCN5A has been used to model human Brugada syndrome: a di...
Brugada syndrome is an inherited, rare cardiac arrhythmogenic disease, associated with sudden cardia...
International audienceBoth gain- and loss-of-function mutations in the SCN5A gene, which encodes the...
Aim: Clinical observations suggest that alternans in action potential (AP) characteristics presages ...
International audienceAims: Loss-of-function of the cardiac sodium channel NaV1.5 is a common featur...
The initial series of experiments investigated the ventricles of Scn3b-/- hearts. These mice showed ...
Reductions in cardiac action potential wavelength, and the consequent wavebreak, have been implicate...
ObjectivesWe examined how repolarization and depolarization abnormalities contribute to the developm...
SCN5A mutations are associated with arrhythmia syndromes, including Brugada syndrome, long QT syndro...
ObjectivesThe aim of this study was to test the hypothesis that late potentials and fractionated ele...
AIM: To investigate the interacting effects of age and sex on electrocardiographic (ECG) features of...
Brugada Syndrome is a rare cardiac disease that leads to an increased risk of sudden cardiac death d...
Brugada syndrome is a heterogeneous genetic channelopathy that predisposes to ventricular arrhythmia...