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Published on: December 6, 2016
A modified monobloc for the treatment of obstructive sleep apnoea in paediatric patients
Paola Cozza1, Antonella Polimeni, Fabiana Ballanti
1Department of Orthodontics, University of Rome 'Tor Vergata', Italy.
Insights
Children with obstructive sleep apnoea (OSA) have distinct craniofacial differences. Modified monobloc (MM) appliance treatment effectively reduced OSA severity and improved sleep quality in these children.
Area of Science:
- Pediatric Dentistry
- Sleep Medicine
- Orthodontics
Background:
- Obstructive sleep apnoea (OSA) in children is associated with specific craniofacial morphology.
- Understanding these differences is crucial for effective treatment strategies.
Purpose of the Study:
- To compare craniofacial morphology in children with OSA versus healthy controls.
- To evaluate the efficacy of modified monobloc (MM) appliance treatment for pediatric OSA.
Main Methods:
- 20 children with OSA and 20 healthy controls (ages 4-8) were studied.
- Diagnosis of OSA and treatment effects were assessed using polysomnography.
- Cephalometric radiographs and study models were analyzed for craniofacial and dental arch measurements.
Main Results:
- OSA patients exhibited a skeletal Class II pattern, reduced mandibular length, increased overbite, and superiorly positioned hyoid bone.
- Smaller inter-molar distances in the mandibular arch were observed in OSA children.
- MM appliance treatment significantly reduced the apnoea-hypopnoea index (AHI) by 6 months.
Conclusions:
- Significant craniofacial differences exist between children with and without OSA.
- The modified monobloc (MM) appliance is an effective treatment for pediatric OSA, improving AHI, reducing daytime sleepiness, and enhancing sleep quality.
- Good patient and parent compliance was reported for MM treatment.
Abstract:
The aims of this study were to determine the differences in craniofacial morphology between children with obstructive sleep apnoea (OSA) and control subjects, and to investigate the effects of modified monobloc (MM) appliance treatment in OSA children. The treatment group consisted of 20 OSA Caucasian subjects (10 boys and 10 girls) with ages ranging from 4 to 8 years (mean 5.91 years). The control group comprised 20 healthy Caucasian subjects without OSA (10 boys and 10 girls) with ages ranging from 5 to 7 years (mean 6 years). Polysomnography was used to establish the diagnosis of OSA and to evaluate the effects of MM treatment in the test group. Cephalometric radiographs and study models were obtained for all subjects. A number of statistically significant differences were detected in craniofacial morphology between the treatment group and controls. The treatment group demonstrated a skeletal Class II pattern (P= 0.04), with a reduced mandibular length (P= 0.03) and a corresponding increase in overbite. The hyoid bone was located superiorly in the OSA group (P = 0.04). Analysis of the dental arches demonstrated a significantly smaller distance between the first and second inter-molar primary mandibular regions (P = 0.03 and P = 0.04, respectively) in OSA patients. Repeat polysomnography, with the MM in situ, after 6 months of wear, revealed a significant reduction in the apnoea-hypopnoea index in children with OSA (P= 0.0003). The MM was found to reduce daytime sleepiness and to subjectively improve assessed sleep quality. The patients and their parents reported good compliance with MM treatment.
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