Related Experiment Video
Updated: Aug 16, 2026

Seeding and Implantation of a Biosynthetic Tissue-engineered Tracheal Graft in a Mouse Model
Published on: April 1, 2019
Surgical treatment of pulmonary artery sling and tracheal stenosis
Andrew C Fiore1, John W Brown, Thomas R Weber
1Division of Pediatric Surgery, St. Louis University Medical Center, St. Louis, Missouri, USA. fiorem2@slu.edu
Insights
Surgical repair of pulmonary artery sling in infants is effective, with tracheal repair not always necessary. Simultaneous correction of heart defects and management of lung anomalies can be safely performed.
Area of Science:
- Pediatric surgery
- Cardiovascular surgery
- Thoracic surgery
Background:
- Pulmonary artery sling is a rare vascular anomaly often associated with tracheal stenosis.
- Surgical intervention is critical for symptomatic newborns and infants due to high mortality rates.
- The optimal surgical approach, including left pulmonary artery reimplantation and tracheal reconstruction techniques, remains debated.
Purpose of the Study:
- To evaluate the surgical outcomes of pulmonary artery sling repair, with or without tracheoplasty.
- To assess the necessity of tracheal repair in conjunction with pulmonary artery sling repair.
- To determine the safety and efficacy of simultaneous correction of intracardiac defects and management of associated anomalies.
Main Methods:
- Retrospective review of 14 patients (mean age, 7 months) undergoing pulmonary artery sling repair (alone or with tracheoplasty) between 1983 and 2003.
- Surgical techniques included left pulmonary artery reimplantation (13 patients) or translocation (1 patient), and tracheoplasty using autologous pericardial patch or slide technique.
- Associated procedures included repair of septal defects and shunts for complex congenital heart disease.
Main Results:
- Two hospital deaths (14%) occurred due to sepsis and renal failure.
- Five patients required reoperation for granulation tissue after tracheoplasty.
- All patients had patent left pulmonary artery anastomoses at follow-up (mean, 42 months), with no reoperations needed for tracheal reconstruction.
Conclusions:
- Tracheal repair is not invariably required for pulmonary artery sling repair.
- Agenesis of the right lung does not preclude successful surgical repair.
- Pericardial patch and slide tracheoplasty are effective methods for tracheal reconstruction in infants.
Background:
Pulmonary artery sling is a rare vascular ring and is commonly associated with tracheal stenosis. Symptomatic newborns and infants with these complex lesions have a high mortality rate without surgical intervention. The ideal operation remains controversial, with debate focusing on the need for left pulmonary artery for reimplantation and the technique of tracheal reconstruction.
Methods:
From 1983 to 2003, 14 patients with pulmonary artery sling (mean age, 7 months; range, 6 days to 27 months) underwent repair of pulmonary artery sling alone (6 patients), tracheoplasty alone (1 patient), and pulmonary artery sling repair with tracheoplasty (7 patients). Preoperatively, 7 patients were intubated, 2 had VATER (vertebral, anal, tracheal, esophageal, and radial anomalies) syndrome, and 2 patients had agenesis of the right lung. The left pulmonary artery was reimplanted at the ductal insertion site in 13 patients. One patient had left pulmonary artery translocation. Tracheoplasty employing extracorporeal circulation consisted of autologous pericardial patch (6 patients) or slide tracheoplasty (2 patients). Six patients with pulmonary artery sling and mild tracheal stenosis required only left pulmonary artery reimplantation. Concomitant procedures included closure of atrial septal defect (4 patients), ventricular septal defect (4 patients), and shunt for Fallot's tetralogy (2 patients).
Results:
There were 2 hospital deaths (2 of 14;14%) from abdominal sepsis (1) and renal failure (1). Reoperations included diaphragm plication (2), tracheostomy (1), and bronchoscopy with laser resection of granulation tissue (5 patients: 2 slide, 3 pericardium). Follow-up was complete in all patients (mean, 42 months) with 1 late death from fungal sepsis. At follow-up, all left pulmonary artery anastomoses were patent by echocardiography, and no patient has required reoperation for trachea reconstruction.
Conclusions:
These data demonstrate that tracheal repair is not always necessary in the presence of pulmonary artery sling; that agenesis of the right lung is not a contraindication to successful complete repair; and that simultaneous correction of intracardiac defects can be safely performed in selected patients. This study suggests that in newborns and infants, pericardial patch and slide tracheoplasty are effective methods for trachea reconstruction.
Related Concept Videos
Trachea
Anatomical Features:
Location: About half of the trachea is situated in the neck, anterior to the esophagus, and extends from the larynx (at the level of the...
Flail Chest-II
Assessment:
1. Clinical Evaluation:
History:
Oxygen Delivering System III: Tracheostomy and T-piece
Tracheostomy
A tracheostomy is a surgically created opening (stoma) in the anterior part of the trachea. It is used to establish a patient airway, bypass an upper airway obstruction, simplify the removal of secretions, permit long-term...
Tracheostomy: Procedure and Tubes
Tracheostomy tubes can be made of semiflexible plastic (polyurethane or silicone), rigid plastic, or metal, and they come in...
Tracheostomy Decannulation
Description of the Procedure
Decannulation refers to the permanent removal of the tracheostomy tube, signaling the resolution of the condition that initially necessitated the tracheostomy. The process requires a well-coordinated interplay between...
Cardiopulmonary Resuscitation V: Advanced Airway Management Techniques

