Objectives: Optimized temporary bi-ventricular (BiV) pacing may benefit heart failure patients after on-pump cardiac surgery compared with conventional dual-chamber right ventricular (RV) pacing. An improvement in haemodynamic function with BiV pacing may reduce the duration of 'Level 3' intensive care.
Methods: Thirty-eight patients in sinus rhythm, ejection fraction ≤35%, undergoing on-pump surgical revascularization, valve surgery or both were enrolled in this study. Before closing the sternum, temporary epicardial pacing wires were attached to the right atrium, RV outflow tract and basal posterolateral wall of the left ventricle. Patients were randomly assigned to postoperative BiV pacing with the optimization of the atrio- (AV) and inter-ventricular (VV) pacing intervals (Group 1) or conventional dual-chamber right AV pacing (Group 2). The primary end-point was the duration of 'Level 3' intensive care. Secondary end-points included cardiac output which was measured by thermodiluation at admission to the intensive care unit and at 6 and 18 h later, in five different pacing modes.
Results: The duration of 'Level 3' care was similar between groups (40 ± 35 vs 54 ± 63 h; Group 1 vs 2; P = 0.43). Cardiac output was similar in all pacing modes at baseline. At 18 h, cardiac output with BiV pacing (5.8 l/min) was 7% higher than atrial inhibited (5.4 l/min) and 9% higher than dual-chamber RV pacing (5.3 l/min; P = 0.02 and 0.001, respectively). Optimization of the VV interval produced a further 4% increase in cardiac output compared with baseline settings (P = 0.005).
Conclusions: Postoperative haemodynamic function may be enhanced by temporary BiV pacing of high-risk patients after on-pump cardiac surgery.
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http://dx.doi.org/10.1093/ejcts/ezs492 | DOI Listing |
Micromachines (Basel)
January 2025
Section of Electrophysiology, Division of Cardiology, Department of Internal Medicine, Rush University Medical Center, 1653 W. Congress, Chicago, IL 60612, USA.
Although significant strides have been made in cardiac pacing, the field is still evolving. While transvenous permanent pacing is highly effective in the management of bradyarrhythmias, it is not risk free and may result in significant morbidity and, rarely, mortality. Transvenous leads are often the weakest link in a pacing system.
View Article and Find Full Text PDFJACC Clin Electrophysiol
November 2024
Centre for Translational Electrophysiology, Institute of Cardiovascular Science, University College London, London, United Kingdom; Department of Electrophysiology, Barts Heart Centre, St. Bartholomew's Hospital, London, United Kingdom. Electronic address:
Background: In ventricular tachycardia (VT), optimal substrate mapping strategies identifying arrhythmogenic sites are not established.
Objectives: This study sought to evaluate multidirectional pacing on the distribution of specific conduction and repolarization metrics to localize re-entrant VT sites in a porcine infarct model.
Methods: Substrate maps were created in 13 pigs with chronic myocardial infarction using the Advisor HD Grid (Abbott) during right ventricular (RV), left ventricular, biventricular pacing (BIV), and sinus rhythm (SR).
Eur Heart J Case Rep
October 2024
Department of Cardiology, Heart and Lung Center Helsinki University Hospital, Haartmanninkatu 4, FI-00029 HUS, Helsinki, Finland.
J Clin Med
September 2024
Heart Institute, Medical School, University of Pécs, 7624 Pécs, Hungary.
Europace
November 2024
Service de Cardiologie et Maladies Vasculaires, CHRU Hopital de Pontchaillou, Rennes, France.
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