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Effect of bipole configuration on atrial electrograms during atrial fibrillation
J M Baerman1, K M Ropella, A V Sahakian
1Department of Medicine, Evanston Hospital, Illinois 60201.
Abstract:
Despite an increasing body of work on the nature of fibrillatory rhythms, and the application of different bipole configurations in antifibrillatory devices, little published work has assessed the effect of bipole configuration on the endocardial recordings of fibrillatory rhythms. To address this issue, a specially designed 6 Fr decapolar catheter was used to record intra-atrial electrograms during sustained atrial fibrillation in 15 patients. Simultaneous filtered (30-500 Hz) and unfiltered (0.05-5,000 Hz) recordings of atrial fibrillation were performed of four different bipole configurations: (a) 1-mm interelectrode spacing adjacent to the atrial wall; (b) 10-mm interelectrode spacing adjacent to the atrial wall; (c) 10-mm inter-electrode spacing 24 mm from the distal catheter tip; (d) 1-mm interelectrode spacing 24 mm from the distal catheter tip. One minute of such data was recorded, and each 4.27-second segment (x 14 segments) was analyzed for atrial rate, electrogram amplitude, amplitude probability density function (apdf), median frequency in the 2-9 Hz band, and electrogram morphology. Changes in bipole configuration resulted in profound changes in calculated atrial rate, amplitude, and apdf (P less than 0.001 by two-way ANOVA in each instance). Specifically, closer interbipole spacing and closer proximity to the atrial wall resulted in lower calculated atrial rates, higher electrogram amplitudes, and higher apdf values. In contrast, median frequency proved to be a more robust measure despite multiple configurations (P greater than 0.10 by two-way ANOVA). These changes significantly affected the predictive value of previously published detection criteria for rate (P less than 0.01) and apdf (P less than 0.00001). Bipole location also affected morphology, with locations adjacent to the atrial wall and with closer interbipole spacing having more discrete electrograms and greater apparent organization (P less than 0.0001). Further, when data segments from all patients and bipole configurations were grouped, rate and apdf were found to be strongly inversely correlated (r = -0.808). (r = -0.808).(ABSTRACT TRUNCATED AT 400 WORDS)