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Published on: April 4, 2020
Tidal breathing flow volume profiles during sleep in wheezing infants measured by impedance pneumography
Javier Gracia-Tabuenca1, Ville-Pekka Seppä1, Milla Jauhiainen1
1Faculty of Biomedical Sciences and Engineering, Tampere University of Technology , Tampere , Finland.
Insights
Overnight breathing patterns in infants with wheeze change with sleep stage and asthma risk. Rapid eye movement (REM) sleep accentuates breathing differences in infants with higher asthma risk, correlating with lung function.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Respiratory Physiology
Background:
- Home monitoring of wheezing disorders in children using overnight tidal breathing flow volume (TBFV) loops via impedance pneumography (IP) is established.
- The influence of sleep physiology on TBFV profiles and wheeze in infants remains poorly understood.
Purpose of the Study:
- To investigate how sleep physiology modifies TBFV profiles in infants with wheeze.
- To examine the interaction between sleep phases (REM and NREM) and asthma risk on TBFV indexes.
Main Methods:
- Forty-three infants with recurrent lower airway symptoms were grouped by asthma risk (high, intermediate, low).
- Infant lung function testing, including methacholine challenge, was performed.
- Overnight TBFV profiles were recorded at home using IP during natural sleep, with indexes estimated for REM and NREM sleep.
Main Results:
- Intrasubject sleep phase differences were observed in TBFV indexes.
- Peak expiratory flow was lower in high-risk infants compared to low-risk infants during REM sleep.
- Indexes of expiratory flow deceleration indicated more limited flow during passive exhalation in high-risk infants, irrespective of sleep phase.
- During REM sleep, TBFV profile convexity correlated negatively with maximal flow and methacholine responsiveness.
Conclusions:
- TBFV profiles recorded overnight by IP vary significantly with sleep phase and infant asthma risk.
- Physiological changes during REM sleep, such as reduced respiratory muscle tone, exacerbate TBFV alterations caused by airway obstruction.
- Overnight TBFV analysis during REM sleep may provide valuable insights into airway obstruction and lung function in wheezing infants.
Abstract:
Overnight analysis of tidal breathing flow volume (TBFV) loops, recorded by impedance pneumography (IP), has been successfully applied in the home monitoring of children with wheezing disorders. However, little is known on how sleep physiology modifies the relationship between TBFV profiles and wheeze. We studied such interactions in wheezing infants. Forty-three infants recruited because of recurrent lower airway symptoms were divided into three groups based on their risk of asthma: high (HR), intermediate (IR), or low (LR). Sedated patients underwent infant lung function testing including assessment of airway responsiveness to methacholine at the hospital and a full-night recording of TBFV profiles at home with IP during natural sleep. Overnight TBFV indexes were estimated from periods of higher and lower respiration variability, presumably belonging to active [rapid eye movement (REM)] and quiet [non-REM (NREM)] sleep, respectively. From 35 valid recordings, absolute time indexes showed intrasubject sleep phase differences. Peak flow relative to time and volume was lower in HR compared with LR only during REM, suggesting altered expiratory control. Indexes estimating the concavity/convexity of flow decrease during exhalation suggested limited flow during passive exhale in HR compared with IR and LR, similarly during NREM and REM. Moreover, during REM convexity was negatively correlated with maximal flow at functional residual capacity and methacholine responsiveness. We conclude that TBFV profiles determined from overnight IP recordings vary because of sleep phase and asthma risk. Physiological changes during REM, most likely decrease in respiratory muscle tone, accentuate the changes in TBFV profiles caused by airway obstruction. NEW & NOTEWORTHY Impedance pneumography was used to investigate overnight tidal breathing flow volume (TBFV) indexes and their interactions with sleep phase [rapid eye movement (REM) vs. non-REM] at home in wheezing infants. The study shows that TBFV indexes vary significantly because of sleep phase and asthma risk of the infant and that during REM the changes in TBFV indexes caused by airway obstruction are accentuated and better associated with lung function of the infant.
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