Polysomnographic Markers in Children With Cystic Fibrosis Lung Disease
Shruti M Paranjape1, Brian M McGinley2, Andrew T Braun3
1Eudowood Division of Pediatric Respiratory Sciences, and sparanj1@jhmi.edu.
Insights
Children with cystic fibrosis (CF) show abnormal breathing patterns and gas exchange during sleep, even when standard tests are normal. Sleep monitoring may help detect early signs of CF lung disease.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Cystic Fibrosis Research
Background:
- Children with cystic fibrosis (CF) frequently experience poor sleep, daytime sleepiness, and fatigue.
- Conventional polysomnography (PSG) may not detect subtle respiratory abnormalities in CF patients.
Purpose of the Study:
- To identify distinct respiratory patterns in children with CF across varying disease severity.
- To test the hypothesis that CF patients exhibit unrecognized gas exchange abnormalities and increased respiratory loads during sleep compared to controls.
Main Methods:
- Breathing patterns and gas exchange were analyzed during PSG in children with CF and age/BMI-matched healthy controls.
- All participants underwent PSG for evaluation of obstructive sleep apnea due to snoring history.
Main Results:
- Children with CF had lower oxyhemoglobin saturation and higher respiratory rates during non-rapid eye movement sleep compared to controls.
- A greater proportion of CF patients exhibited inspiratory flow limitation during sleep.
- The respiratory disturbance index did not significantly differ between groups.
Conclusions:
- Children with CF demonstrate impaired gas exchange and increased respiratory effort during sleep, independent of weight or lung function.
- Sleep state monitoring offers a potential avenue for early detection of breathing abnormalities and CF lung disease progression.
Background And Objectives:
Children with cystic fibrosis (CF) often report poor sleep, increased daytime sleepiness, and fatigue. The purpose of this study was to identify respiratory patterns over the spectrum of disease severity in children with CF. The overall hypothesis for the current study is that children with CF compared with snoring control subjects demonstrate gas exchange abnormalities and increased respiratory loads during sleep that are not reported or recognized by conventional polysomnography (PSG).
Methods:
Analysis of breathing patterns and gas exchange on PSG was performed in children with CF and healthy controls matched by age and BMI. For all CF and control subjects, the indication for PSG was evaluation for obstructive sleep apnea based on a history of snoring.
Results:
Children with CF, compared with age- and BMI-matched snoring controls, demonstrated lower oxyhemoglobin saturation (95% ± 1.6% vs 98% ± 0.6%, P = .005), higher respiratory rate (19.5 ± 4.9 vs 16.5 ± 1.2 breaths per minute, P = .03), and a higher proportion of inspiratory flow limitation (44.1% ± 24.7% vs 12.1% ± 13.5%, P = .007) during non-rapid eye movement sleep. The respiratory disturbance index did not differ between CF and snoring control groups (1.5 ± 2.7 vs 0.6 ± 0.6 events per hour, P = .11).
Conclusions:
Children with CF exhibited abnormalities in gas exchange and increased respiratory load during sleep compared with normal age- and BMI-matched snoring controls. Because these abnormalities were independent of weight and lung function, sleep state may serve as an opportunity for early detection of breathing abnormalities and possibly CF lung disease progression.
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