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Published on: December 6, 2016
Observational Study of Pulse Transit Time in Children With Sleep Disordered Breathing
Michael P Yanney1, Andrew P Prayle2,3, Nicola J Rowbotham2
1Sherwood Forest Hospitals Foundation Trust, Mansfield, United Kingdom.
Insights
Pulse transit time (PTT) shows higher sensitivity than oximetry for detecting pediatric sleep disordered breathing (SDB). Combining PTT with video and sound significantly improves SDB detection in children compared to oximetry alone.
Area of Science:
- Pediatric Sleep Medicine
- Cardiorespiratory Physiology
- Diagnostic Technologies
Background:
- Sleep disordered breathing (SDB) in children is a significant health concern.
- Pulse transit time (PTT) offers a non-invasive method to assess respiratory effort and arousals.
- Current diagnostic methods, like oximetry, have limitations in sensitivity and specificity for pediatric SDB.
Purpose of the Study:
- To identify threshold values of PTT parameters (respiratory swing, arousal index) for detecting SDB in children.
- To compare the diagnostic performance of PTT with standard oximetry.
- To evaluate the added value of multi-channel polysomnography including video and sound for SDB detection.
Main Methods:
- A cross-sectional observational study involving 521 children undergoing multi-channel sleep studies.
- PTT data from 368 children were analyzed to construct receiver operator characteristic (ROC) curves.
- Thresholds for PTT respiratory swing and arousal index were determined and validated.
- Oximetry data (oxygen saturations, desaturations) were compared with multi-channel findings.
Main Results:
- A PTT respiratory swing threshold of 17.92 ms detected SDB with 80% sensitivity and 79% specificity.
- A PTT arousal index threshold of 16.06/hour detected SDB with 85% sensitivity and 37% specificity.
- Oximetry detected SDB with 38% sensitivity and 98% specificity, while multi-channel assessment with video/sound identified twice as many SDB cases.
Conclusions:
- PTT is a more sensitive but less specific tool than oximetry for pediatric SDB detection.
- Integrating PTT with video and sound in multi-channel studies enhances SDB diagnosis in children.
- These findings suggest PTT as a valuable adjunct for non-invasive pediatric SDB screening.
Abstract:
Background: Pulse transit time (PTT) is a non-invasive measure of arousals and respiratory effort for which we aim to identify threshold values that detect sleep disordered breathing (SDB) in children. We also compare the sensitivity and specificity of oximetry with the findings of a multi-channel study. Methods: We performed a cross-sectional observational study of 521 children with SDB admitted for multi-channel sleep studies (pulse oximetry, ECG, video, sound, movement, PTT) in a secondary care centre. PTT data was available in 368 children. Studies were categorised as normal; primary snoring; upper airway resistance syndrome (UARS); obstructive sleep apnoea (OSA), and "abnormal other." Receiver operator characteristic curves were constructed for different PTT (Respiratory swing; Arousal index) thresholds using a random sample of 50% of children studied (training set); calculated thresholds of interest were validated against the other 50% (test set). Study findings were compared with oximetry categories (normal, inconclusive, abnormal) using data (mean and minimum oxygen saturations; oxygen desaturations > 4%) obtained during the study. Results: Respiratory swing of 17.92 ms identified SDB (OSA/UARS) with sensitivity: 0.80 (C.I. 0.62-0.90) and specificity 0.79 (C.I. 0.49-0.87). PTT arousal index of 16.06/ hour identified SDB (OSA/UARS) with sensitivity: 0.85 (95% C.I. 0.67-0.92) and specificity 0.37 (95% C.I. 0.17-0.48). Oximetry identified SDB (OSA) with sensitivity: 0.38 (C.I. 0.31-0.46) and specificity 0.98 (C.I. 0.97-1.00). Conclusions: PTT is more sensitive but less specific than oximetry at detecting SDB in children. The additional use of video and sound enabled detection of SDB in twice as many children as oximetry alone.
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