Background: Hypokalemia increases the vulnerability to ventricular fibrillation (VF). We hypothesize that the apamin-sensitive small conductance calcium-activated potassium current (IKAS) is activated during hypokalemia and that IKAS blockade is proarrhythmic. Methods and Results: Optical mapping was performed in 23 Langendorff perfused rabbit ventricles with atrioventricular block and either right ventricular (RV) or left ventricular (LV) pacing during normokalemia or hypokalemia. Apamin prolonged the action potential duration (APD) measured to 80% repolarization (APD80) by 26 ms [95% confidence interval, CI, 14–37] during normokalemia and by 54 ms [CI, 40 to 68] during hypokalemia (P=0.01) at 1000 ms pacing cycle length (PCL). In hypokale...
Background Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
Background: Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
BACKGROUND: We previously reported that IKAS are heterogeneously upregulated in failing rabbit ventr...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
Background Apamin-sensitive small conductance calcium-activated K current (IKAS) is upregulated dur...
Introduction Apamin-sensitive small-conductance calcium-activated potassium current (IKAS) is inc...
BACKGROUND: Ventricular fibrillation (VF) during heart failure is characterized by stable reentra...
BACKGROUND: The transmural distribution of apamin-sensitive small conductance Ca(2+)-activated K(+) ...
BackgroundThe apamin-sensitive small-conductance calcium-activated K (SK) current IKAS modulates aut...
Background The apamin-sensitive small-conductance calcium-activated K (SK) current (IKAS) modulates...
BACKGROUND Hypokalemia and sympathetic activation are commonly associated with electrical storm (ES...
BackgroundA secondary rise of intracellular Ca(2+) (Cai) and an upregulation of apamin-sensitive K(+...
BackgroundA secondary rise of intracellular Ca(2+) (Cai) and an upregulation of apamin-sensitive K(+...
BackgroundA secondary rise of intracellular Ca(2+) (Cai) and an upregulation of apamin-sensitive K(+...
Background Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
Background: Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
BACKGROUND: We previously reported that IKAS are heterogeneously upregulated in failing rabbit ventr...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
Background Apamin-sensitive small conductance calcium-activated K current (IKAS) is upregulated dur...
Introduction Apamin-sensitive small-conductance calcium-activated potassium current (IKAS) is inc...
BACKGROUND: Ventricular fibrillation (VF) during heart failure is characterized by stable reentra...
BACKGROUND: The transmural distribution of apamin-sensitive small conductance Ca(2+)-activated K(+) ...
BackgroundThe apamin-sensitive small-conductance calcium-activated K (SK) current IKAS modulates aut...
Background The apamin-sensitive small-conductance calcium-activated K (SK) current (IKAS) modulates...
BACKGROUND Hypokalemia and sympathetic activation are commonly associated with electrical storm (ES...
BackgroundA secondary rise of intracellular Ca(2+) (Cai) and an upregulation of apamin-sensitive K(+...
BackgroundA secondary rise of intracellular Ca(2+) (Cai) and an upregulation of apamin-sensitive K(+...
BackgroundA secondary rise of intracellular Ca(2+) (Cai) and an upregulation of apamin-sensitive K(+...
Background Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
Background: Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
BACKGROUND: We previously reported that IKAS are heterogeneously upregulated in failing rabbit ventr...