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Published on: January 17, 2011
External stenting: A reliable technique to relieve airway obstruction in small children
Makoto Ando1, Yuzo Nagase2, Hisaya Hasegawa3
1Sakakibara Heart Institute, Tokyo, Japan.
Insights
External stenting effectively treats pediatric airway obstruction caused by vascular compression and tracheobronchomalacia. This technique supports age-appropriate airway growth in children, offering a reliable solution for complex respiratory issues.
Area of Science:
- Pediatric Surgery
- Thoracic Surgery
- Pulmonary Medicine
Background:
- Airway obstruction in children can stem from vascular compression and congenital tracheobronchomalacia.
- Obstructive pulmonary vascular disease poses a risk for patients with congenital heart disease.
Purpose of the Study:
- To evaluate an original external stenting technique for treating pediatric airway obstruction.
- To assess the efficacy and safety of external stenting in children with cardiovascular anomalies.
Main Methods:
- External stenting was performed on 98 pediatric patients between 1997 and 2015.
- The study included patients with congenital heart disease and various airway obstruction mechanisms.
- 127 external stentings were performed on 139 obstruction sites in the trachea and bronchi.
Main Results:
- Mortality occurred in 14 patients; 9 required reoperation for restenosis, and 3 needed stent removal due to infection.
- Actuarial freedom from mortality and reoperation was 74.7% at 2.8 years.
- External stenting improved airway collapse thresholds and maintained stented segment diameters.
Conclusions:
- External stenting is a reliable method for relieving airway compression in young children.
- The technique facilitates age-proportional airway growth.
- External stenting offers a viable treatment option for pediatric airway obstruction.
Objective:
Airway obstruction in children may be caused by conditions such as vascular compression and congenital tracheobronchomalacia. Obstructive pulmonary vascular disease may be a detrimental sequel for patients with congenital heart disease. We evaluate our own original external stenting technique as a treatment option for these patients.
Methods:
Ninety-eight patients underwent external stenting (1997-2015). Cardiovascular anomalies were noted in 82 (83.7%). Nine patients had hypoplastic left heart syndrome and 6 had other types of single-ventricular hearts.
Results:
The median age at the first operation was 7.2 months (range, 1.0-77.1 months). The mechanisms were tracheobronchomalacia with (n = 46) or without (n = 52) vascular compression. Patients underwent 127 external stentings for 139 obstruction sites (62 trachea, 55 left bronchus, and 22 right bronchus). The stent sizes varied from 12 to 16 mm. There were 14 (8 in the hospital and 6 after discharge) mortality cases. Nine required reoperation for restenosis and 3 required stent removal for infection. The actuarial freedom from mortality and any kind of reoperation was 74.7% ± 4.6% after 2.8 years. The negative pressure threshold to induce airway collapse for congenital malacia (n = 58) improved from -15.9 to -116.0 cmH2O. A follow-up computed tomography scan (>2.0 years interval from the operation; n = 23) showed the mean diameter of the stented segment at 88.5% ± 13.7% (bronchus) and 94.5% ± 8.2% (trachea) of the reference.
Conclusions:
External stenting is a reliable method to relieve airway compression for small children, allowing an age-proportional growth of the airway.
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