Permanent epicardial pacing in children: long-term results and factors modifying outcome

Petr Kubus1, Ondrej Materna, Roman A Gebauer

  • 1Kardiocentrum and Cardiovascular Research Centre, University Hospital Motol, V Úvalu 84, Prague, Czech Republic. peter.kubus@lfmotol.cuni.cz

Insights

Permanent epicardial pacing in children shows a 76% success rate at 10 years, with newer techniques improving longevity. This approach effectively defers transvenous pacing to a later age, reducing reinterventions.

Area of Science:

  • Pediatric Cardiology
  • Biomedical Engineering
  • Electrophysiology

Background:

  • Permanent epicardial pacing is an alternative to transvenous pacing in pediatric patients.
  • Evaluating long-term outcomes of epicardial pacing in children is crucial for optimizing device selection and implantation strategies.

Purpose of the Study:

  • To assess the long-term efficacy and safety of permanent epicardial pacing in a pediatric population.
  • To identify factors influencing pacing system longevity and the need for reintervention.

Main Methods:

  • Retrospective analysis of 119 pediatric patients (<18 years) who underwent permanent epicardial pacemaker implantation between 1977 and 2009.
  • Evaluation of pacing system dysfunction, lead performance, and battery depletion over a median follow-up of 6.4 years.
  • Comparison of outcomes based on lead type (steroid-eluting, bipolar vs. unipolar), and pacing features (AutoCapture™).

Main Results:

  • The 10-year probability of continued epicardial pacing was 76.1%, with improved outcomes in the post-2000 implantation era.
  • Steroid-eluting leads significantly reduced the risk of exit block (HR 0.20) and battery depletion (HR 0.30).
  • Bipolar Medtronic 4968 leads and the AutoCapture™ feature reduced the risk of lead fracture/failure and battery depletion, respectively.

Conclusions:

  • Permanent epicardial pacing in children offers a 10-year success rate of 76%, enabling delayed transvenous pacing.
  • The use of bipolar steroid-eluting leads and AutoCapture™ technology enhances pacing system longevity and reduces surgical reinterventions.
  • Recent implantation trends suggest improved outcomes, highlighting the importance of device selection in pediatric pacing.
Abstract

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