Three-Dimensional Palatal Morphology and Obstructive Sleep Apnea Severity in Children with Unilateral Cleft Lip and
Chinnakrij Posiri1, Nuntigar Sonsuwan2, Marasri Chaiworawitkul1
1Department of Orthodontics and Pediatric Dentistry, Faculty of Dentistry, Chiang Mai University, Chiang Mai 50200, Thailand.
Insights
Children with unilateral cleft lip and palate (UCLP) and obstructive sleep apnea (OSA) have smaller palates. Reduced palatal volume is linked to more severe OSA in these children.
Area of Science:
- Craniofacial Anomalies
- Pediatric Sleep Medicine
- 3D Imaging in Dentistry
Background:
- Obstructive sleep apnea (OSA) is common in children with unilateral cleft lip and palate (UCLP).
- Maxillary retrusion and airway compromise contribute to OSA in UCLP patients.
- Limited 3D data exists on palatal morphology's impact on pediatric OSA in UCLP.
Purpose of the Study:
- To evaluate palatal dimensions and maxillary widths in UCLP children with and without OSA using cone-beam computed tomography (CBCT).
- To examine associations between palatal morphology and OSA severity (apnea-hypopnea index, AHI).
Main Methods:
- Analyzed 40 CBCT scans of Thai children with non-syndromic UCLP (mean age 8.98 years).
- Grouped participants into OSA (AHI ≥ 1) and non-OSA (AHI < 1) cohorts.
- Measured palatal surface area, volume, height, and transverse maxillary widths; analyzed group differences and AHI correlations.
Main Results:
- Children with OSA had significantly reduced palatal surface area, volume, height, and buccal alveolar crest width compared to non-OSA peers.
- Palatal volume was the sole variable independently associated with increased AHI (β = -0.631, p < 0.001).
Conclusions:
- UCLP children with OSA exhibit significantly constricted palatal morphology.
- Reduced 3D palatal volume is independently associated with OSA severity in this population.
- CBCT-based palatal volume may aid OSA risk screening in cleft care, requiring further validation.
Abstract:
Background/Objectives: Obstructive sleep apnea (OSA) is highly prevalent in children with unilateral cleft lip and palate (UCLP) due to maxillary retrusion and upper airway compromise. While palatal morphology may influence pediatric OSA, three-dimensional (3D) evaluations in this population remain limited. This study evaluated palatal dimensions and maxillary widths in UCLP children with and without OSA using cone-beam computed tomography (CBCT) and examined their associations with OSA severity (apnea-hypopnea index, AHI). Methods: Forty CBCT scans of Thai children with non-syndromic UCLP (mean age 8.98 ± 1.99 years) were analyzed. Participants were categorized into OSA (n = 20; AHI ≥ 1) and non-OSA (n = 20; AHI < 1) groups. Reconstructed palatal structures were measured for surface area, volume, height, and transverse maxillary widths. Group differences were assessed using independent t-tests, and associations with AHI were examined via Pearson's correlation and linear regression (p < 0.05). Results: Children with OSA exhibited significantly reduced palatal surface area, volume, height, and buccal alveolar crest width compared with those without OSA (p < 0.05). Other transverse widths showed no significant intergroup differences. Linear regression identified palatal volume as the only variable independently associated with AHI (β = -0.631, p < 0.001). Conclusions: Children with UCLP and OSA exhibit significantly constricted palatal morphology. Among the measured parameters, reduced three-dimensional palatal volume was the only variable independently associated with increased OSA severity in this sample. Thus, CBCT-based palatal volume assessment may serve as a preliminary screening parameter to help identify OSA risk within multidisciplinary cleft care, though further validation is needed.
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