Diaphragm pacing in infants and children. A life-table analysis of implanted components

D E Weese-Mayer1, A S Morrow, R T Brouillette

  • 1Northwestern University Medical School, Children's Memorial Hospital, Department of Pediatrics, Chicago, Illinois.

Insights

Diaphragm pacing using phrenic nerve electrodes is effective for pediatric patients with hypoventilation. However, component failures, including receiver issues and wire breakage, necessitate system improvements for enhanced reliability.

Area of Science:

  • Biomedical Engineering
  • Pediatric Pulmonology
  • Neurosurgery

Background:

  • Diaphragm pacing is a vital treatment for pediatric respiratory failure.
  • The Avery Laboratories (S-232-1) pacemaker system has been used since 1976.
  • Long-term pediatric data on this system's implanted components is limited.

Purpose of the Study:

  • To analyze the reliability and failure modes of implanted diaphragm pacing components in pediatric patients.
  • To identify areas for improvement in the pacemaker system and surgical techniques.

Main Methods:

  • Retrospective analysis of 33 pediatric patients (1976-present) implanted with bilateral phrenic nerve electrodes.
  • Life table analysis to determine the mean time to component replacement.
  • Classification of component failures.

Main Results:

  • 192 system-years and 96 patient-years of pacing data were analyzed.
  • Mean time to component replacement was 56.3 months.
  • 26 failures occurred: 15 receiver failures, 6 electrode wire/insulation breakages, 3 infections, and 2 mechanical nerve injuries.

Conclusions:

  • The diaphragm pacing system is effective but carries risks of biomedical component failure.
  • Improvements needed include a hermetically sealed receiver, stronger electrode wires, and optimized surgical techniques to prevent nerve damage.