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October 26, 2016Journal of the American Heart Association39 citationsOpen Access

Simultaneous Non‐Invasive Epicardial and Endocardial Mapping in Patients With Brugada Syndrome: New Insights Into Arrhythmia Mechanisms

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BRBoris RudicMCMaria ChaykovskayaATAlexey Tsyganov

Key Result

Noninvasive mapping in Brugada syndrome patients showed prolonged RVOT endocardial activation time (65 vs 38 ms; P=0.008) and epicardial activation-recovery interval (281 vs 247 ms; P=0.002).

Study Design

Type

Observational (n=33)

Structured PICO

Does simultaneous noninvasive epicardial and endocardial mapping identify specific electrophysiological abnormalities in patients with Brugada syndrome compared to controls?

P
Population
12 patients with Brugada syndrome (BrS), 6 patients with right bundle branch block, and 15 normal control subjects (total n=33).
I
Intervention
Simultaneous noninvasive epicardial and endocardial mapping using a novel noninvasive epi- and endocardial electrophysiology system (NEEES).
C
Comparator
Patients with right bundle branch block and normal control subjects.
O
Outcome
Abnormalities of epicardial and endocardial local unipolar electrograms (depolarization and repolarization properties).surrogate

Noninvasive mapping reveals that both depolarization and repolarization abnormalities are simultaneously present in the right ventricular outflow tract of patients with Brugada syndrome.

Main Result

Absolute Event Rate: 65% vs 38%

p-value: p=0.008

Abstract

Background The underlying mechanisms of Brugada syndrome (BrS) are not completely understood. Recent studies provided evidence that the electrophysiological substrate, leading to electrocardiogram abnormalities and/or ventricular arrhythmias, is located in the right ventricular outflow tract ( RVOT ). The purpose of this study was to examine abnormalities of epicardial and endocardial local unipolar electrograms by simultaneous noninvasive mapping in patients with BrS. Methods and Results Local epicardial and endocardial unipolar electrograms were analyzed using a novel n oninvasive e pi‐ and e ndocardial e lectrophysiology s ystem ( NEEES ) in 12 patients with BrS and 6 with right bundle branch block for comparison. Fifteen normal subjects composed the control group. Observed depolarization abnormalities included fragmented electrograms in the anatomical area of RVOT endocardially and epicardially, significantly prolonged activation time in the RVOT endocardium (65±20 vs 38±13 ms in controls; P =0.008), prolongation of the activation‐recovery interval in the RVOT epicardium (281±34 vs 247±26 ms in controls; P =0.002). Repolarization abnormalities included a larger area of ST ‐segment elevation >2 mV and T‐wave inversions. Negative voltage gradient (−2.5 to −6.0 mV) between epicardium and endocardium of the RVOT was observed in 8 of 12 BrS patients, not present in patients with right bundle branch block or in controls. Conclusions Abnormalities of epicardial and endocardial electrograms associated with depolarization and repolarization properties were found using NEEES exclusively in the RVOT of BrS patients. These findings support both, depolarization and repolarization abnormalities, being operative at the same time in patients with BrS.

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Cite This Study

Rudic et al. (2016) conducted an observational in Brugada syndrome (n=33). Noninvasive epi- and endocardial electrophysiology system (NEEES) vs. Right bundle branch block patients and normal subjects was evaluated on Activation time in the RVOT endocardium (p=0.008). Noninvasive mapping in Brugada syndrome patients showed prolonged RVOT endocardial activation time (65 vs 38 ms; P=0.008) and epicardial activation-recovery interval (281 vs 247 ms; P=0.002).

synapsesocial.com/papers/6a0cfb7332f3c40b5ccbb049https://doi.org/10.1161/jaha.116.004095
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