4.6 Article

Photoplethysmography in Normal and Pathological Sleep

Journal

SENSORS
Volume 21, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/s21092928

Keywords

photoplethysmography; wearables; sleep-related breathing disorders; obstructive sleep apnea; polysomnography; heart rate variability

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This article provides an overview of the advancements in using photoplethysmography (PPG) for unobtrusive sleep studies, discussing its specific properties in capturing autonomic nervous system modulation during sleep. It also highlights recent advances in PPG signal acquisition and processing, as well as potential medical applications such as home-based detection of sleep-disordered breathing and long-term monitoring of various sleep disorders.
This article presents an overview of the advancements that have been made in the use of photoplethysmography (PPG) for unobtrusive sleep studies. PPG is included in the quickly evolving and very popular landscape of wearables but has specific interesting properties, particularly the ability to capture the modulation of the autonomic nervous system during sleep. Recent advances have been made in PPG signal acquisition and processing, including coupling it with accelerometry in order to construct hypnograms in normal and pathologic sleep and also to detect sleep-disordered breathing (SDB). The limitations of PPG (e.g., oxymetry signal failure, motion artefacts, signal processing) are reviewed as well as technical solutions to overcome these issues. The potential medical applications of PPG are numerous, including home-based detection of SDB (for triage purposes), and long-term monitoring of insomnia, circadian rhythm sleep disorders (to assess treatment effects), and treated SDB (to ensure disease control). New contact sensor combinations to improve future wearables seem promising, particularly tools that allow for the assessment of brain activity. In this way, in-ear EEG combined with PPG and actigraphy could be an interesting focus for future research.

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