Related Experiment Video
Updated: Jul 9, 2026

Drug-Induced Sleep Endoscopy (DISE) with Target Controlled Infusion (TCI) and Bispectral Analysis in Obstructive Sleep Apnea
Published on: December 6, 2016
Computational modeling of upper airway before and after adenotonsillectomy for obstructive sleep apnea
Mihai Mihaescu1, Shanmugam Murugappan, Ephraim Gutmark
1Department of Aerospace Engineering and Engineering Mechanics, University of Cincinnati, Cincinnati, Ohio, USA.
Insights
Computational fluid dynamics modeling shows how adenotonsillectomy improves airway flow in obese children with obstructive sleep apnea (OSA), potentially identifying surgical candidates.
Area of Science:
- Biomedical Engineering
- Pediatric Pulmonology
Background:
- Adenotonsillectomy is the primary surgical treatment for pediatric obstructive sleep apnea (OSA).
- Surgical success rates for OSA in obese children are suboptimal, around 50%.
- Computational fluid dynamics (CFD) can analyze airway flow characteristics to differentiate OSA patients.
Observation:
- A computational model of the upper airway was created for an obese female adolescent with OSA before and after adenotonsillectomy.
- Three-dimensional airway models were constructed from magnetic resonance imaging (MRI) scans.
- CFD simulations were used to analyze airway flow dynamics.
Findings:
- Post-adenotonsillectomy, CFD simulations revealed altered airway flow characteristics in the obese child.
- These changes led to reduced pressure differentials and compressive forces across airway walls.
- This suggests a decreased predisposition to airway collapse.
Implications:
- CFD modeling can potentially identify pediatric OSA patients who will benefit from adenotonsillectomy.
- Personalized surgical selection may improve OSA resolution rates in obese children.
- Effective OSA intervention reduces morbidity and public health burdens.
Abstract:
Adenotonsillectomy, the first-line surgical treatment for obstructive sleep apnea (OSA) in children, is successful in only 50% of obese children. Computational fluid dynamics tools, which have been applied to differentiate OSA patients from those without OSA based on the airway flow characteristics, can be potentially used to identify patients likely to benefit from surgical intervention. We present computational modeling of the upper airway before and after adenotonsillectomy in an obese female adolescent with OSA. The subject underwent upper airway imaging on a 1.5 Tesla magnetic resonance imaging (MRI) scanner, and three-dimensional airway models were constructed using airway boundary coordinates from cross-sectional MRI scans. Our results using computational simulations indicate that, in an obese child, the resolution of OSA after adenotonsillectomy is associated with changes in flow characteristics that result in decreased pressure differentials across the airway walls and thus lower compressive forces that predispose to airway collapse. Application of such findings to an obese child seeking surgical treatment for OSA can potentially lead to selection of the surgical procedure most likely to result in OSA resolution. Effective intervention for OSA in this high-risk group will result in reduction in morbidity and the public health concerns associated with OSA.
Related Concept Videos
Sleep Apnea
The condition is more prevalent among...
Suctioning the Oropharyngeal Airway
After assembling the equipment, the nurse should practice hand hygiene and don appropriate PPE according to infection control guidelines to avoid the...
Cardiopulmonary Resuscitation II: ACLS Airway Management

