Bipolar anodal septal pacing with direct LBB capture preserves physiological ventricular activation better than unipolar left bundle branch pacing
curila, k.; Jurak, P.; Prinzen, F.; Jastrzebski, M.; Waldauf, P.; Halamek, J.; Tothova, M.; Znojilova, L.; Smisek, R.; Karch, J.; Poviser, L.; Linkova, H.; Plesinger, F.; Moskal, P.; Viscor, I.; Vondra, V.; Leinveber, P.; Osmancik, P.
Show abstract
BackgroundLeft bundle branch pacing (LBBP) produces delayed, unphysiological activation of the right ventricle. Using ultra-high-frequency electrocardiography (UHF-ECG), we explored how bipolar anodal septal pacing with direct LBB capture (aLBBP) affects the resultant ventricular depolarization pattern. MethodsIn patients with bradycardia, His bundle pacing (HBP), unipolar nonselective LBBP (nsLBBP), aLBBP, and right ventricular septal pacing (RVSP) were performed. Timing of local ventricular activation, in leads V1-V8, was displayed using UHF-ECG, and electrical dyssynchrony (e-DYS) was calculated as the difference between the first and last activation. Durations of local depolarizations were determined as the width of the UHF-QRS complex at 50% of its amplitude. ResultsaLBBP was feasible in 63 of 75 consecutive patients with successful nsLBBP. aLBBP significantly improved interventricular dyssynchrony (-9 ms (-12;-6) vs. -24 ms (-27;-21),), p < 0.001) and shortened local depolarization durations in V1-V4 (mean differences -7 ms to -5 ms (-11;-1), p < 0.05) compared to nsLBBP. Both aLBBP and HBP caused similar absolute levels of interventricular dyssynchrony (e-DYS -9 ms (-12; -6) vs. 10 ms (7;14); however, local depolarization durations in V1-V2 during aLBBP were longer than HBP (differences 5-9 ms (1;14), p < 0.05, with local depolarization duration in V1 during aLBBP being the same as during RVSP (difference 2 ms (-2;6), p = 0.52). ConclusionAlthough aLBBP significantly improved interventricular synchrony and depolarization duration of the septum and RV compared to unipolar nsLBBP, the resultant ventricular depolarization was still less physiological than during HBP.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Atrial functional substrates for the prediction of atrial fibrillation recurrence after pulmonary vein isolation 96%
- Prognostic value of compact myocardial thinning in patients with left ventricular non-compaction 94%
- Investigating Electrocardiographic Abnormalities in Patients with Coronary Microvascular Dysfunction 94%
Similar papers in this journal
- The Effect of Medical Therapy on Reducing the Risk of Pacing Induced Cardiomyopathy 95%
- Smartwatch Facilitated Remote Health Care for Patients Undergoing Transcatheter Aortic Valve Replacement Amid COVID-19 Pandemic 95%
- Relationship of mild to moderate impairment of left ventricular ejection fraction with fatal ventricular arrhythmic events in cardiac sarcoidosis 95%
Similar papers in this journal
- Machine Learning prediction of cardiac resynchronisation therapy response from combination of clinical and model-driven data 96%
- Combination of personalized computational modeling and machine-learning for optimization of left ventricular pacing site in cardiac resynchronization therapy 96%
- A Reproducible Protocol to Assess Arrhythmia Vulnerability in Silico: Pacing at the End of the Effective Refractory Period 94%
Similar papers in this journal
- Comparison of electrophysiological left bundle branch pacing characteristics in different bilateral electrode pacing vector configurations 97%
- Electrocardiographic Abnormalities and Troponin Elevation in COVID-19 94%
- Fragmented QRS is independently predictive of long-term adverse clinical outcomes in Asian patients hospitalized for heart failure: a retrospective cohort study 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.