Aortopulmonary window and the interrupted aortic arch: midterm results with use of the single-patch technique

François Roubertie1, David Kalfa1, Mathieu Vergnat1

  • 1Department of Pediatric and Congenital Heart Disease, Marie Lannelongue Hospital/M3C, University Paris-Sud, Le Plessis-Robinson, France.

Abstract

Insights

A single pericardial patch effectively repaired aortopulmonary window (APW) with interrupted aortic arch (IAA) in infants, showing no deaths or reoperations. This technique restored normal great artery and aortic arch anatomy, proving safe and efficient for complex congenital heart defects.

Area of Science:

  • Pediatric Cardiac Surgery
  • Congenital Heart Disease
  • Surgical Techniques

Background:

  • Aortopulmonary window (APW) and interrupted aortic arch (IAA) are complex congenital heart defects often associated with high perioperative mortality and recurrent arch obstruction.
  • The primary repair of these defects presents significant surgical challenges.

Purpose of the Study:

  • To assess the outcomes of using a single pericardial patch technique for the primary repair of APW associated with IAA.
  • To evaluate the safety and efficacy of this single-stage repair method.

Main Methods:

  • A cohort of 11 neonates and infants with APW and IAA underwent single-stage repair between 2002 and 2011.
  • The repair involved hypothermic cardiopulmonary bypass with antegrade selective cerebral perfusion.
  • A single autologous pericardial patch was used to augment the IAA anastomosis and close the APW using a "sandwich" technique.

Main Results:

  • No early or late deaths occurred in the study group.
  • Postoperative morbidity included one stroke with no late sequelae; no reoperations were necessary.
  • Follow-up confirmed the absence of recurrent aortic arch obstruction and pulmonary artery branch stenosis in all patients.

Conclusions:

  • Primary anatomic repair of APW associated with IAA is safe and feasible using a single-stage approach.
  • The single-patch technique effectively restores normal functional anatomy of the great arteries and aortic arch, demonstrating its efficiency.

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