Stepwise application of ECG and electrogram-based criteria to ensure electrical resynchronization with left bundle branch pacing

医学 心脏再同步化治疗 QRS波群 心脏病学 内科学 捆绑 心力衰竭 射血分数 材料科学 复合材料
作者
Margarida Pujol‐López,Elisenda Ferró,Roger Borràs,Paz Garre,Eduard Guasch,Rafael Jiménez‐Arjona,Cora García-Ribas,Adelina Doltra,Mireia Niebla,Esther Carro,Ivo Roca‐Luque,Jean-Baptiste Guichard,Jose L. Puente,Laura Uribe,Sara Vázquez‐Calvo,M. Castel,Elena Arbelo,Andreu Porta‐Sánchez,Marta Sitges,José Marı́a Tolosana
出处
期刊:Europace [Oxford University Press]
卷期号:25 (6) 被引量:19
标识
DOI:10.1093/europace/euad128
摘要

AIMS: To define a stepwise application of left bundle branch pacing (LBBP) criteria that will simplify implantation and guarantee electrical resynchronization. Left bundle branch pacing has emerged as an alternative to biventricular pacing. However, a systematic stepwise criterion to ensure electrical resynchronization is lacking. METHODS AND RESULTS: A cohort of 24 patients from the LEVEL-AT trial (NCT04054895) who received LBBP and had electrocardiographic imaging (ECGI) at 45 days post-implant were included. The usefulness of ECG- and electrogram-based criteria to predict accurate electrical resynchronization with LBBP were analyzed. A two-step approach was developed. The gold standard used to confirm resynchronization was the change in ventricular activation pattern and shortening in left ventricular activation time, assessed by ECGI. Twenty-two (91.6%) patients showed electrical resynchronization on ECGI. All patients fulfilled pre-screwing requisites: lead in septal position in left-oblique projection and W paced morphology in V1. In the first step, presence of either right bundle branch conduction delay pattern (qR or rSR in V1) or left bundle branch capture Plus (QRS ≤120 ms) resulted in 95% sensitivity and 100% specificity to predict LBBP resynchronization, with an accuracy of 95.8%. In the second step, the presence of selective capture (100% specificity, only 41% sensitivity) or a spike-R <80 ms in non-selective capture (100% specificity, sensitivity 46%) ensured 100% accuracy to predict resynchronization with LBBP. CONCLUSION: Stepwise application of ECG and electrogram criteria may provide an accurate assessment of electrical resynchronization with LBBP (Graphical abstract).
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