Key result
Combined intercostal ECG transition zone index identifies ACC origin of ventricular arrhythmias with 100% specificity.
Why the study?
Multiple intercostal recordings were proposed to provide a more comprehensive view of the depolarization vector of OT-VA to improve accurate identification of OT-VA origin.
Do multiple intercostal space ECG recordings improve the accuracy of localizing outflow tract ventricular arrhythmia origin in patients undergoing catheter ablation?
Observational (n=47)
Do multiple intercostal space ECG recordings improve the accuracy of localizing outflow tract ventricular arrhythmia origin in patients undergoing catheter ablation?
Effect estimate: AUC 0.974
p-value: p=<0.05
The combined TZ index derived from multiple intercostal space ECG recordings accurately differentiates left from right outflow tract ventricular arrhythmia origins.
May aid pre-ablation VA localization; leaves open prospective validation of procedural outcomes.
BACKGROUND: Multiple intercostal recordings were supposed to get a more comprehensive view of the depolarization vector of the outflow tract ventricular arrhythmia (OT-VA), which may help to identify the OT-VA more accurately. This study was undertaken to develop a more accurate electrocardiogram (ECG) criterion for differentiating between left and right OT-VA origins. METHODS: We studied OT-VA with a left bundle branch block pattern and inferior axis QRS morphology in 47 patients with successful catheter ablation in the right ventricular OT (RVOT; n = 37) or aortic coronary cusp (ACC; n = 10). Superior and inferior precordial leads were taken together with the routine 12-lead ECG. The ECG during the OT-VA and during sinus beats were analyzed. Transition ratio, transition zone (TZ) index, R/S amplitude ratio, and R-wave duration ratio were measured in the regular, superior, and inferior precordial leads. RESULTS: The combined TZ index, TZ index inferior was significantly smaller, while the V2 inferior transition ratio was significantly larger for ACC origins than RVOT origins (P < 0.05). The area under the curve for the combined TZ index by a receiver operating characteristic analysis was 0.974, which was significantly larger than other parameters. A cutoff value ≤0.25 predicted an ACC origin with 94% sensitivity and 100% specificity. This advantage of the parameter over others also held true for a subanalysis of OT-VAs with a lead V3 precordial transition or TZ index = 0. CONCLUSIONS: The combined TZ index outperformed other ECG criteria to differentiate left from right OT-VA origins.
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Liu et al. (2015) conducted an observational in Outflow tract ventricular arrhythmia (OT-VA) (n=47). Combined transition zone (TZ) index from multiple intercostal ECGs vs. Other ECG parameters was evaluated on Prediction of aortic coronary cusp (ACC) origin (AUC 0.974, p=<0.05). A combined transition zone index cutoff ≤0.25 from multiple intercostal ECGs predicted an aortic coronary cusp origin of ventricular arrhythmias with 94% sensitivity and 100% specificity.
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