Key result
Transthoracic tissue Doppler imaging reliably measured atrial fibrillation cycle length compared to intracardiac electrograms (R=0.91, P<0.0001), with a mean difference of 2 ms.
Why the study?
Does transthoracic tissue Doppler imaging accurately measure atrial fibrillation cycle length compared to intracardiac electrogram in patients with atrial fibrillation?
Observational (n=20)
Does transthoracic tissue Doppler imaging accurately measure atrial fibrillation cycle length compared to intracardiac electrogram in patients with atrial fibrillation?
Effect estimate: R = 0.91 (95% CI -26 to +22 ms)
Absolute Event Rate: 172% vs 170%
p-value: p=<0.0001
Transthoracic tissue Doppler imaging provides a reliable, noninvasive method to measure atrial fibrillation cycle length and monitor antiarrhythmic drug effects.
Hypothesis-generating for noninvasive AFCL monitoring; prospective validation needed before clinical adoption.
BACKGROUND: The atrial fibrillation cycle length (AFCL) is a critical parameter for the perpetuation and termination of AF. In the present study, we evaluated a new method to measure the AFCL based on transthoracic tissue Doppler imaging (TDI) of the right atrium (RA) and left atrium (LA). METHODS: Twenty patients with AF (6 acute AF, 14 persistent or permanent AF) were studied. A quadripolar catheter was positioned at RA or LA to measure AFCL (AFCL(EGM), gold standard). Transthoracic echocardiography (apical 4-chamber view) was used to perform pulsed wave TDI at the free wall of RA or LA. AFCL(TDI) was defined as the time interval between two consecutive positive to negative crossings of the baseline of the atrial time velocity curves. AFCL(EGM) and AFCL(TDI) were measured at baseline and during a 10-minute infusion of flecainide (1.5 mg/kg). RESULTS: Measurement of AFCL(TDI) was feasible in all but one patient. At baseline, AFCL(EGM) was 170 +/- 22 ms, AFCL(TDI) 172 +/- 22 ms (difference 2 +/- 5 ms). AFCL(TDI) correlated significantly with AFCL(EGM) (R = 0.91, P < 0.0001). Bland-Altman analysis showed a bias of -2 ms with a 95% limit of agreement between -26 ms and +22 ms. During flecainide, the AFCL(TDI) method yielded an AFCL prolongation from 176 +/- 23 ms at baseline to 279 +/- 68 ms (P < 0.01) after 10 minutes of infusion (57 +/- 26%). CONCLUSIONS: (1) Tissue Doppler imaging of the atria during transthoracic echocardiography can be used to reliably determine the AFCL during both acute and persistent or permanent AF. (2) Continuous measurement of AFCL with TDI can be used to monitor the effect of antiarrhythmic drugs on atrial rate during AF. (3) This novel method is attractive because of the ease of acquiring the data and its noninvasive character.
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Duytschaever et al. (2006) conducted an observational in Atrial fibrillation (n=20). Transthoracic tissue Doppler imaging (TDI) vs. Intracardiac electrogram (EGM) was evaluated on Atrial fibrillation cycle length (AFCL) (R = 0.91, 95% CI -26 to +22 ms, p=<0.0001). Transthoracic tissue Doppler imaging reliably measured atrial fibrillation cycle length compared to intracardiac electrograms (R=0.91, P<0.0001), with a mean difference of 2 ms.
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