Pulmonary autograft in children: realized growth potential

R C Elkins1, C J Knott-Craig, K E Ward

  • 1Department of Surgery, University of Oklahoma Health Sciences Center, Oklahoma City 73190.

Insights

Pulmonary autografts in children show excellent long-term survival and freedom from reoperation. The inclusion cylinder technique for aortic valve replacement appears most promising for optimal growth and durability.

Area of Science:

  • Cardiovascular Surgery
  • Pediatric Cardiology
  • Thoracic Surgery

Background:

  • Pulmonary autograft aortic valve replacement offers potential for growth in pediatric patients.
  • Assessing long-term aortic root and valve dimensions is crucial for pediatric cardiac surgery outcomes.

Purpose of the Study:

  • To compare early and late postoperative aortic annulus and sinotubular dimensions after pulmonary autograft aortic valve replacement in children.
  • To evaluate the growth potential and durability of pulmonary autografts in pediatric aortic valve surgery.

Main Methods:

  • Retrospective analysis of 86 children (0.9-21 years) undergoing aortic valve replacement with pulmonary autografts between 1986 and 1993.
  • Categorization into root replacement (42), inclusion cylinder (24), and scalloped subcoronary implant (20) groups.
  • Comparison of aortic annulus and sinotubular junction diameters with normal values predicted by body surface area.

Main Results:

  • Actuarial survival at 7 years was 96.5%. Freedom from reoperation was 92% overall.
  • The inclusion cylinder technique showed 100% freedom from autograft reoperation.
  • Intraaortic implants demonstrated proportional annulus growth, while root replacements showed dilation; sinotubular junctions generally normalized over time.

Conclusions:

  • Pulmonary autografts demonstrate favorable long-term survival and durability in pediatric aortic valve replacement.
  • The inclusion cylinder technique may offer superior outcomes regarding autograft growth and reduced reoperation rates.
  • Monitoring aortic dimensions is essential to understand graft adaptation and potential complications.