Ventricular beats induce variations in cycle length of rapid (type II) atrial flutter in humans: Evidence of leading circle reentry

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Abstract

Background: Slight variation in cycle lengths of common and rapid atrial flutter in humans is an established phenomenon, but its mechanisms have not been completely clarified. In a previous study, we demonstrated that in common atrial flutter the variations in atrial cycle length were due to atrial stretch affecting the revolution time of a reentrant circuit. In the present study, we investigate the nature of atrial cycle length variations in the rapid type of human atrial flutter. Methods and Results: Atrial interval variations of 17 episodes of rapid atrial flutter in 14 patients were investigated by measuring the sequence of atrial intervals from intraesophageal or intra-atrial leads and the onset of QRS complexes from a surface lead (V1). To study whether interval variation in flutter cycle was related to ventricular activity, a phase plot was constructed in which the flutter cycle length was plotted against the time after the previous QRS complex. This showed that the interval fluctuations were strictly coupled to the moment of ventricular activation. After the onset of the QRS complex, the rapid atrial flutter interval gradually decreased by an average of 4.1% (P

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Ravelli, F., Disertori, M., Cozzi, F., Antolini, R., & Allessie, M. A. (1994). Ventricular beats induce variations in cycle length of rapid (type II) atrial flutter in humans: Evidence of leading circle reentry. Circulation, 89(5), 2107–2116. https://doi.org/10.1161/01.CIR.89.5.2107

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