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July 23, 2020Circulation Arrhythmia and Electrophysiology39 citations

Bilateral Bundle Branch Area Pacing to Achieve Physiological Conduction System Activation

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JLJinxuan LinKCKeping ChenYDYan Dai

Key Result

Bilateral bundle branch area pacing significantly shortened QRS duration compared to left bundle branch pacing (109.3±7.1 vs 118.4±5.7 ms, P<0.001) and resolved right bundle branch block morphology.

Structured PICO

Does bilateral bundle branch area pacing improve QRS duration and ventricular activation times compared to left bundle branch pacing in patients with symptomatic bradycardia?

P
Population
36 patients with symptomatic bradycardia undergoing pacing, with pacing stability and short-term safety assessed at 3-month follow-up.
I
Intervention
Bilateral bundle branch area pacing (BBBP) via a transventricular-septal approach, using the distal electrode of a bipolar pacing lead to pace the left bundle branch area and the ring electrode to pace the right bundle branch area
C
Comparator
Left bundle branch pacing (LBBP)
O
Outcome
QRS duration, delayed right ventricular activation time, left ventricular activation time, and interventricular conduction delaysurrogate

Bilateral bundle branch area pacing is a feasible technique that produces more physiological ventricular activation and narrower QRS duration compared to standard left bundle branch pacing by mitigating delayed right ventricular activation.

Main Result

Absolute Event Rate: 109.3% vs 118.4%

p-value: p=<0.001

Abstract

Background: Left bundle branch pacing (LBBP) is a technique for conduction system pacing, but it often results in right bundle branch block morphology on the ECG. This study was designed to assess simultaneous pacing of the left and right bundle branch areas to achieve more synchronous ventricular activation. Methods: In symptomatic bradycardia patients, the distal electrode of a bipolar pacing lead was placed at the left bundle branch area via a transventricular-septal approach. This was used to pace the left bundle branch area, while the ring electrode was used to pace the right bundle branch area. Bilateral bundle branch area pacing (BBBP) was achieved by stimulating the cathode and anode in various pacing configurations. QRS duration, delayed right ventricular activation time, left ventricular activation time, and interventricular conduction delay were measured. Pacing stability and short-term safety were assessed at 3-month follow-up. Results: BBBP was successfully performed in 22 of 36 patients. Compared with LBBP, BBBP resulted in greater shortening of QRS duration (109.3±7.1 versus 118.4±5.7 ms, P <0.001). LBBP resulted in a paced right bundle branch block configuration, with a delayed right ventricular activation time of 115.0±7.5 ms and interventricular conduction delay of 34.0±8.8 ms. BBBP fully resolved the right bundle branch block morphology in 18 patients. In the remaining 4 patients, BBBP partially corrected the right bundle branch block with delayed right ventricular activation time decreasing from 120.5±4.7 ms during LBBP to 106.1±4.2 ms during BBBP ( P =0.005). Conclusions: LBBP results in a relatively narrow QRS complex but with an interventricular activation delay. BBBP can diminish the delayed right ventricular activation, producing more physiological ventricular activation. Graphic Abstract: A graphic abstract is available for this article.

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Cite This Study

Lin et al. (2020) studied Symptomatic bradycardia (n=36). Bilateral bundle branch area pacing (BBBP) vs. Left bundle branch pacing (LBBP) was evaluated on QRS duration (p=<0.001). Bilateral bundle branch area pacing significantly shortened QRS duration compared to left bundle branch pacing (109.3±7.1 vs 118.4±5.7 ms, P<0.001) and resolved right bundle branch block morphology.

synapsesocial.com/papers/6a63cdcae8eb334078f2d539https://doi.org/10.1161/circep.119.008267
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