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Ventricular activation pattern assessment during right ventricular pacing: Ultra‐high‐frequency ECG study

Karol Čurila, Pavel Jurák, Josef Halámek, Frits W. Prinzen, Petr Waldauf, Jakub Karch, Petr Štros, Filip Plešinger, Jan Mizner, Markéta Sušánková, Radka Procházková, Ondřej Süssenbek, Ivo Viščor, Vlastimil Vondra, Radovan Smíšek, Pavel Leinveber, Pavel Osmančík

2021Journal of Cardiovascular Electrophysiology38 citationsDOIOpen Access PDF

Abstract

BACKGROUND: Right ventricular (RV) pacing causes delayed activation of remote ventricular segments. We used the ultra-high-frequency ECG (UHF-ECG) to describe ventricular depolarization when pacing different RV locations. METHODS: In 51 patients, temporary pacing was performed at the RV septum (mSp); further subclassified as right ventricular inflow tract (RVIT) and right ventricular outflow tract (RVOT) for septal inflow and outflow positions (below or above the plane of His bundle in right anterior oblique), apex, anterior lateral wall, and at the basal RV septum with nonselective His bundle or RBB capture (nsHBorRBBp). The timings of UHF-ECG electrical activations were quantified as left ventricular lateral wall delay (LVLWd; V8 activation delay) and RV lateral wall delay (RVLWd; V1 activation delay). RESULTS: The LVLWd was shortest for nsHBorRBBp (11 ms [95% confidence interval = 5-17]), followed by the RVIT (19 ms [11-26]) and the RVOT (33 ms [27-40]; p < .01 between all of them), although the QRSd for the latter two were the same (153 ms (148-158) vs. 153 ms (148-158); p = .99). RV apical capture not only had a longer LVLWd (34 ms (26-43) compared to mSp (27 ms (20-34), p < .05), but its RVLWd (17 ms (9-25) was also the longest compared to other RV pacing sites (mean values for nsHBorRBBp, mSp, anterior and lateral wall captures being below 6 ms), p < .001 compared to each of them. CONCLUSION: RVIT pacing produces better ventricular synchrony compared to other RV pacing locations with myocardial capture. However, UHF-ECG ventricular dysynchrony seen during RVIT pacing is increased compared to concomitant capture of basal septal myocytes and His bundle or proximal right bundle branch.

Topics & Concepts

MedicineCardiologyInternal medicineVentricular outflow tractVentricular pacingApex (geometry)AnatomyHeart failureCardiac pacing and defibrillation studiesCardiac Arrhythmias and TreatmentsCardiovascular Effects of Exercise
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