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Published on: April 28, 2016
Children with down syndrome and sleep disordered breathing display impairments in ventilatory control
Leon S Siriwardhana1, Gillian M Nixon2, Margot J Davey2
1The Ritchie Centre, Department of Paediatrics, Monash University and Hudson Institute of Medical Research, Melbourne, Australia.
Insights
Children with Down syndrome and sleep disordered breathing exhibit higher loop gain, indicating unstable ventilatory control. This finding suggests potential inherent impairments contributing to their increased risk and may guide new treatment strategies.
Area of Science:
- Pediatric Pulmonology
- Neurodevelopmental Disorders
- Sleep Medicine
Background:
- Sleep disordered breathing (SDB) is common in children with Down syndrome (DS).
- Ventilatory control instability, measured by loop gain, is a potential factor in SDB.
- The role of loop gain in pediatric DS with SDB requires further investigation.
Purpose of the Study:
- To investigate the role of ventilatory control instability (loop gain) in children with Down syndrome (DS) and sleep disordered breathing (SDB).
- To compare loop gain in children with DS and SDB to typically developing (TD) children matched for SDB severity.
Main Methods:
- Overnight polysomnography was performed on 14 children with DS and SDB and 14 matched TD children.
- Loop gain was estimated using a mathematical model of ventilatory control, analyzing post-sigh ventilatory patterns.
- Flow measurements and oxygen saturation were recorded within a 180s analysis window around spontaneous sighs.
Main Results:
- Children with DS exhibited significantly higher loop gain compared to TD controls (median 0.36 vs 0.32, P=0.0395).
- Children with DS had significantly lower average oxygen saturation during sleep (96.9% vs 98.0%, P=0.0155).
- Loop gain was not correlated with polysomnographic measures of hypoxia.
Conclusions:
- Elevated loop gain in children with DS and SDB suggests more unstable ventilatory control.
- This instability may stem from inherent ventilatory control impairments in DS, increasing SDB risk.
- Findings may inform the development of alternative treatment strategies for SDB in this population.
Objectives:
To investigate the role of ventilatory control instability (i.e. loop gain) in children with Down syndrome and sleep disordered breathing.
Methods:
Children (3-19 years) with Down syndrome and sleep disordered breathing (n = 14) were compared with typically developing children (n = 14) matched for age, sex and sleep disordered breathing severity. All children underwent overnight polysomnography. Spontaneous sighs were identified and a 180s analysis window (60s pre-sigh to 120s post-sigh) containing flow measurements and oxygen saturation were created. Loop gain, a measure of the sensitivity of the negative feedback loop that controls ventilation, was estimated by fitting a mathematical model of ventilatory control to the post-sigh ventilatory pattern. Results; Loop gain was significantly higher in children with Down syndrome compared to matched typically developing children (median loop gain [interquartile range]: 0.36 [0.33, 0.55] vs 0.32 [0.24, 0.38]; P = 0.0395). While children with Down syndrome also had significantly lower average oxygen saturation associated within each analysis window compared to typically developing children (mean ± standard deviation: 96.9 ± 1.3% vs 98.0 ± 1.0%; P = 0.0155), loop gain was not related to polysomnographic measures of hypoxia.
Conclusions:
Higher loop gain in children with Down syndrome and sleep disordered breathing indicates that these children have more unstable ventilatory control, compared to age, sex and sleep disordered breathing severity matched typically developing children. This may be due to an inherent impairment in ventilatory control in children with Down syndrome contributing to their increased risk of sleep disordered breathing which may inform alternative treatment options for this population.
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