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Published on: August 8, 2025
Transvenous pacing in children weighing less than 10 kilograms
Rogelio Robledo-Nolasco1, Martín Ortiz-Avalos, Gerardo Rodriguez-Diez
1Electrophysiology Division, National Medical Center: 20 de Noviembre, ISSSTE, Mexico City, Mexico. rogelio_robledo@hotmail.com
Insights
Transvenous pacemaker implantation is safe and feasible in children under 10 kg, offering a less invasive alternative to epicardial pacing for bradyarrhythmias.
Area of Science:
- Pediatric Cardiology
- Medical Device Technology
Background:
- Bradyarrhythmias in pediatric patients necessitate pacemaker implantation.
- The epicardial approach is traditionally favored for young children to mitigate thrombosis risks.
Purpose of the Study:
- To evaluate the feasibility and safety of transvenous pacemaker implantation in pediatric patients weighing less than 10 kg.
- To compare the transvenous approach with the standard epicardial method in this specific patient group.
Main Methods:
- Transvenous pacemaker implantation via subclavian puncture using a 4 Fr sheath after venogram.
- Progressive sheath dilation (5, 6, 7 Fr) and endocardial lead placement.
- Subaponeurotic pacemaker pocket creation (abdominal or pectoral).
Main Results:
- Successful implantation in 12 pediatric patients (median weight 7.9 kg, range 2.3-10.0 kg).
- No procedural complications reported; one case of lead dislodgement requiring replacement.
- One mortality due to septicemia; mean follow-up of 31.8 months.
Conclusions:
- Transvenous pacemaker implantation is a feasible and safe procedure for children weighing less than 10 kg.
- This endocardial approach presents a less invasive alternative to the conventional epicardial method.
Abstract:
Pacemakers are used in small children with increasing frequency for the treatment of life-threatening bradyarrhythmias. The epicardial approach is generally preferred in these patients, to avoid the risks of vessel thrombosis. We examined the feasibility and safety of transvenous pacemaker implantation in children weighing <10 kg, via subclavian puncture, using a 4 Fr sheath introduced after a venogram was performed to evaluate the vein diameter. Progressive dilation with 5, 6, and 7 Fr sheaths preceded the insertion and placement of the endocardial lead. A subaponeurotic pocket was created in the abdominal or pectoral regions, depending upon the patient's size. Between 2001 and 2007, we treated 12 patients (median age = 16 months; range 1-32; median weight = 7.9 kg; range 2.3-10.0; 7 males), of whom four weighed <5 kg. Indications for permanent pacing included postsurgical complete atrioventricular block (n = 8), sinus node dysfunction (n = 2), congenital atrioventricular block (n = 1), and long QT syndrome (n = 1). Single-chamber pacemakers were implanted in 10, and dual-chamber pacemakers in two patients. The patients were evaluated at 48 hours, 10 days, and at 3 and 6 months. The mean follow-up was 31.8 +/- 23.5 months. There were no procedural complications. Lead dislodgment occurred in one patient and required replacement of the ventricular lead. One patient died from septicemia. Endocardial pacemaker implantation was feasible and safe in children weighing <10 kg. This procedure is less invasive than the standard epicardial approach.
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