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Postoperative Upper Airway Volume Measurements Among Children With Craniofacial Abnormalities
Tom Ben-Dov1, Lydia Pan2, Alex J Gordon2
1Department of Otolaryngology-Head and Neck Surgery, NYU Langone Health, New York, New York, USA.
Insights
Children with craniofacial abnormalities have smaller postoperative airway volumes than normal. Three-dimensional (3D) airway analysis aids surgical planning to optimize breathing.
Area of Science:
- Medical Imaging
- Craniofacial Surgery
- Pediatric Otolaryngology
Background:
- Craniofacial abnormalities can significantly impact airway dimensions.
- Postoperative airway assessment is crucial for patient outcomes.
- Normative data provides a benchmark for evaluating airway size.
Purpose of the Study:
- To quantify postoperative upper airway volumes in pediatric patients with craniofacial abnormalities.
- To compare these volumes against established normative values.
- To assess the utility of 3D imaging in evaluating airway dynamics post-surgery.
Main Methods:
- Retrospective comparative study involving 21 pediatric patients with craniofacial abnormalities.
- Utilized 3D processing software (Dolphin 3D) to measure upper airway volumes from CT scans.
- Compared measured volumes to published normative data.
Main Results:
- Postoperative oropharyngeal volumes were significantly smaller (43.7% reduction, P < .001).
- Total upper airway volumes showed a significant reduction (31.6%, P = .003).
- No significant differences were found in nasopharyngeal or hypopharyngeal volumes compared to norms.
Conclusions:
- Children with craniofacial anomalies exhibit reduced postoperative airway volumes.
- Even minor airway volume increases can substantially improve airflow.
- 3D airway evaluation is valuable for surgical planning and optimizing airway function.
Objective:
To measure postoperative airway volumes among patients with craniofacial abnormalities and compare them to normative values.
Study Design:
Retrospective, comparative study.
Setting:
Academic Medical Center.
Methods:
Retrospective analysis of imaging of children with craniofacial abnormalities treated at NYU Langone Health from January 2013 to February 2021. Upper airway volumes postcraniofacial surgery were measured using 3D processing software (Dolphin 3D, version 11.95). These values were compared with published normative values.
Results:
Twenty-one subjects were identified and compared to normative values. The postoperative oropharyngeal volumes were on average 43.7% smaller than the normative values (P < .001), and the total upper airway volumes were 31.6% smaller (P = .003). No significant differences were observed in the nasopharyngeal or hypopharyngeal volumes of the study cohort compared to the normative data. Among children ages 12 to 17 years (n = 13), the mean oropharyngeal volumes were 47.6% smaller than normal (P < .001), and the mean total upper airway volumes were 34.6% smaller than normal (P < .001). Among children ages 7 to 11 years (n = 8), the mean oropharyngeal volumes were 35.1% smaller than normal (P = .049), but no difference in mean total upper airway volume was observed.
Conclusion:
In children with craniofacial anomalies, postoperative airway volumes remain lower than normative values. However, even a slight increase in airway volume can yield a substantial increase in flow rate. 3D airway evaluations are a valuable tool for surgical planning and analysis and can help with optimizing airway dynamics.
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