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Published on: September 28, 2022
Upper Airway Computed Tomography Measures and Receipt of Tracheotomy in Infants With Robin Sequence
Victoria S Lee1, Kelly N Evans2, Francisco A Perez3
1Division of Pediatric Otolaryngology, Department of Otolaryngology-Head and Neck Surgery, University of Washington and Seattle Children's, Seattle.
Insights
Objective computed tomography (CT) measures of tongue and jaw structure can identify infants with Robin sequence and predict the need for tracheotomy, aiding clinical decisions.
Area of Science:
- Pediatric craniofacial surgery
- Pediatric airway management
- Medical imaging analysis
Background:
- Airway management in infants with Robin sequence presents significant challenges.
- Objective measures are needed to assess airway compromise and guide treatment decisions, particularly tracheotomy.
Purpose of the Study:
- To define objective upper airway measures using craniofacial computed tomography (CT) in infants with Robin sequence.
- To identify CT-derived measures associated with the need for tracheotomy in this population.
Main Methods:
- A cohort study compared 37 infants with Robin sequence to 37 age- and sex-matched controls.
- Craniofacial CT scans were used to measure 28 upper airway parameters.
- Interrater reliability was assessed for key measurements.
Main Results:
- 17 of 28 measures differed between infants with Robin sequence and controls.
- Five reliable CT measures (tongue length/position, mandibular length/angles) differentiated infants requiring tracheotomy.
- A composite score of these measures predicted tracheotomy with 86% sensitivity and 74% specificity (AUC 0.83).
Conclusions:
- CT-derived measures of tongue position and mandibular configuration can objectively identify infants with Robin sequence.
- These measures effectively differentiate infants with severe airway compromise requiring tracheotomy.
- Validated CT measures can improve clinical decision-making for airway management in Robin sequence.
Importance:
Airway management in infants with Robin sequence is challenging. Objective upper airway measures associated with severe airway compromise requiring tracheotomy are needed to guide decision making.
Objectives:
To define objective upper airway measures in infants with Robin sequence from craniofacial computed tomography (CT) and to identify those measures in Robin sequence associated with tracheotomy.
Design, Setting, And Participants:
A cohort study (2003 to 2014, over 1-year follow-up) of 37 infants with Robin sequence evaluated for surgical management and 37 selected age- and sex-matched controls without a craniofacial condition conducted in a pediatric institution's craniofacial center.
Main Outcomes And Measures:
Define and compare CT-generated upper airway measures in these groups: infants with Robin sequence vs controls, and infants with Robin sequence with vs without tracheotomy. A negative difference signifies lower values for the Robin sequence and tracheotomy groups. Clinical data collected included age and height at time of CT scan, sex, tracheotomy presence, associated syndrome, and laboratory indicators of hypoventilation and hypoxemia. To evaluate interrater reliability, 2 raters performed each measurement in the Robin sequence group.
Results:
In 74 infants, 17 of 28 measures were different between infants with Robin sequence and those in the control group. Tracheotomy was performed in 14 of 37 (38%) infants with Robin sequence. Infants with tracheotomy more commonly had associated syndromes (12 of 14 [86%] vs 11 of 23 [48%]) and a history of hypoventilation and hypoxemia (13 of 14 [93%] vs 15 of 23 [65%]). Five of the 11 measures associated with tracheotomy were reliable and simpler to measure with the following mean differences (95% CIs) between groups: tongue length, 0.87 (0.26 to 1.48); tongue position relative to palate, 0.83 (0.22 to 1.45); mandibular total length, -0.8 (-1.42 to -0.19); gonial angle, 0.71 (0.08 to 1.34); and inferior pogonial angle, 0.66 (0.02 to 1.29). Using a receiver operating characteristic analysis, a composite score of these 5 measures for predicting tracheotomy risk yielded an area under the curve of 0.83 and achieved 86% sensitivity and 74% specificity.
Conclusions And Relevance:
Computed tomography measures quantifying tongue position and mandibular configuration can identify infants with Robin sequence, and importantly, differentiate those who have severe upper airway compromise requiring tracheotomy. Following validation, these measures can be used for objective upper airway assessment and for expediting clinical decision-making in these challenging cases for which no such tools currently exist.
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