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Published on: December 6, 2016
Polysomnographic Profile and Clinical Phenotypes of Osa in Association with Residual Sleep Apnea in Children
Alžbeta Soršáková1, Anna Durdikova1, Peter Durdik1
1Department of Pediatrics and Adolescent Medicine, Jessenius Faculty of Medicine in Martin, Comenius University in Bratislava, University Hospital Martin, 036 59 Martin, Slovakia.
Insights
Children with adult-type obstructive sleep apnea (OSA) face a higher risk of residual OSA after surgery. Phenotyping is key for managing and predicting residual sleep apnea severity in pediatric patients.
Area of Science:
- Pediatric Sleep Medicine
- Otolaryngology
- Respiratory Medicine
Background:
- Residual obstructive sleep apnea (OSA) is defined as persistent apnea-hypopnea index (AHI) after intervention.
- Pediatric OSA presents with common, adult, and congenital phenotypes.
Purpose of the Study:
- To investigate the risk of residual OSA in pediatric patients based on clinical phenotype after adenotonsillectomy (ATE).
Main Methods:
- 34 pediatric OSA patients underwent polysomnography (PSG) and ATE.
- Patients were reassessed with PSG 3 months post-surgery and categorized into common or adult phenotypes.
Main Results:
- Residual OSA was found in 24 patients (70.6%) with a mean AHI of 6.67 ± 9.17.
- Residual OSA prevalence was significantly higher in the adult phenotype group (80.0%) compared to the common phenotype group (57.1%) (p < 0.001).
- Incidence of severe, moderate, and mild residual OSA was 17.6%, 20.6%, and 32.4%, respectively.
Conclusions:
- Children with the adult OSA phenotype have a significantly higher risk of residual OSA post-ATE.
- Phenotyping pediatric OSA is crucial for predicting residual OSA severity and guiding management strategies.
Abstract:
Introduction: Residual obstructive sleep apnea (OSA) is defined as persistence of the AHI at ≥1 respiratory event per hour of sleep after otorhinolaryngology intervention in pediatric population. In terms of OSA phenotypes in children, we recognize the common, adult, and congenital phenotypes. Material and Methods: We studied 34 pediatric patients with OSA diagnosed by standard overnight polysomnography (PSG). Based on the results, all 34 patients were indicated for adenotonsillectomy (ATE). After 3 months, patients were invited to the sleep laboratory for second control PSG. These OSA patients were divided according to clinical phenotype into two groups: common phenotype and adult phenotype. Results: Residual OSA was diagnosed in 24 patients with a mean AHI 6.67 ± 9.17 after ATE procedure. Incidence of severe residual OSA was 17.6%; moderate residual OSA was 20.6%; mild residual OSA was 32.4%. Residual OSA in classic phenotype was present in eight patients (57.1%). In total, 16 patients with the adult phenotype of OSA (80.0%) were diagnosed with residual OSA. Prevalence was significantly higher in children with the adult phenotype (p < 0.001). Conclusions: We concluded that there is a higher risk of residual OSA in children with the adult phenotype. Phenotyping of children with OSA appears to be an important tool for further management and also in predicting the severity of residual OSA.
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