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Breath Collection from Children for Disease Biomarker Discovery
Published on: February 14, 2019
Respiratory polygraphy in children with sleep-disordered breathing
Gunnhildur Gudnadottir1, Louise Hafsten1, Staffan Redfors2
1Department of Otorhinolaryngology, Sahlgrenska Academy at the University of Gothenburg, Gothenburg, Sweden.
Insights
At-home respiratory polygraphy quality is often poor in children, with missing airflow data limiting diagnosis of sleep-disordered breathing. Respiratory inductance plethysmography flow scoring is unreliable and scorer-dependent.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Diagnostic Technology
Background:
- At-home respiratory polygraphy (RP) is a reliable alternative to in-laboratory polysomnography for diagnosing obstructive sleep apnea in adults.
- Its utility and reliability in pediatric populations, particularly for assessing sleep-disordered breathing (SDB), remain less understood.
Purpose of the Study:
- To evaluate the quality of pediatric at-home RP for diagnosing SDB.
- To assess the interrater reliability of RP scoring in children.
- To determine if calibrated respiratory inductance plethysmography (RIP) flow can reliably score respiratory events when airflow data is compromised.
Main Methods:
- 113 children aged 4-10 years with SDB underwent at-home RP.
- Quality assessment focused on signal availability and artifact presence.
- 17 studies were scored by two independent scorers, with and without nasal airflow data, using RIP flow as a substitute when necessary.
- Apnea-hypopnea index (AHI) interrater reliability and scorer agreement using RIP flow were analyzed using intraclass correlation coefficients (ICC).
Main Results:
- Only 46% of pediatric at-home RPs were of acceptable quality, with 40% experiencing missing nasal airflow data.
- Median artifact-free recording time across three traces was 228 minutes.
- Interrater agreement for AHI was moderate (ICC=0.66 with airflow, ICC=0.53 without).
- One scorer showed good agreement (ICC=0.81) when using RIP flow, while the other showed poor agreement (ICC=0.12).
Conclusions:
- Pediatric at-home RP frequently suffers from poor data quality, primarily due to missing nasal airflow signals.
- The use of RIP flow for scoring respiratory events is scorer-dependent, impacting diagnostic reliability.
- Current limitations hinder the widespread usefulness of at-home RP for diagnosing SDB in children.
Abstract:
At-home respiratory polygraphy has been shown to be a reliable substitute for in-laboratory polysomnography in adults for diagnosing obstructive sleep apnea, but this is less well studied in children. One aim of this study was to examine the quality of at-home respiratory polygraphy in children with sleep-disordered breathing and to evaluate the interrater reliability of the results. Another aim was to study whether calibrated respiratory inductance plethysmography (RIP) flow can be used for the scoring of respiratory events when the airflow measurements are unreliable. Children aged 4-10 years, with sleep-disordered breathing, underwent at-home respiratory polygraphy. Of 113 polygraphies, only 46% were of acceptable quality, with missing nasal airflow being the most common problem (40%). The median recorded time with artifact-free signal present in three traces simultaneously was 228 min (0-610 min). Seventeen polygraphy studies were selected for further study. Each study was scored by two independent scorers, with and without the nasal airflow signal present, the latter relying on RIP flow for the scoring of respiratory events. The apnea-hypopnea index (AHI) from the four different measurements was compared using intraclass correlation coefficients (ICC). Comparison of the two scorers showed moderate agreement, with (ICC = 0.66) and without (ICC = 0.53) nasal airflow. One scorer had good agreement between AHI with and without nasal airflow (ICC = 0.81), whereas the other had poor agreement (ICC = 0.12). In conclusion, the scoring of respiratory events based on RIP flow is scorer dependent even for experienced scorers. The nasal airflow signal is frequently missing in paediatric respiratory polygraphies, which limits the usefulness of the method.
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