Programmed electrical stimulation revealed that bundle branch block during supraventricular tachycardia was likely due to concealed retrograde conduction of the appropriate bundle branch.
Case Report (n=4)
Does programmed electrical stimulation with right ventricular premature beats normalize intraventricular conduction in patients with paroxysmal supraventricular tachycardia and bundle branch block aberration?
Bundle branch block during supraventricular tachycardia is likely due to concealed retrograde conduction, and cycle length depends on the anatomical relationship of the anomalous bypass to the blocked bundle branch.
Four patients with paroxysmal supraventricular tachycardia have been studied using programmed electrical stimulation of the heart and intracardiac recordings. One patient had an atrioventricular (A-V) junctional tachycardia, possibly due to a rapidly discharging protected ectopic focus, and three patients had anomalous atrioventricular connections. The ECG recordings in all four patients showed a bundle branch block pattern during tachycardia, and normal intraventricular conduction could be produced by suitably timed right ventricular premature beats. The cycle length of the tachycardia was shorter with normal intraventricular conduction than in the presence of a bundle branch block pattern in two patients. Evidence is presented indicating that the bundle branch block during tachycardia was likely to be due to concealed retrograde conduction of the appropriate bundle branch, and in the presence of an anomalous bypass, the cycle length of the tachycardia depended on the anatomical relationship of the anomalous bypass to the blocked bundle branch.
Spurrell et al. (Sun,) conducted a case report in Paroxysmal supraventricular tachycardia (n=4). Programmed electrical stimulation and intracardiac recordings was evaluated on Bundle branch block pattern and cycle length during tachycardia. Programmed electrical stimulation revealed that bundle branch block during supraventricular tachycardia was likely due to concealed retrograde conduction of the appropriate bundle branch.