New insights into the origin of remote PPG signals in visible light and infrared

Новые сведения об источнике удалённых PPG-сигналов в видимом и инфракрасном диапазонах
Sander Stuijk, Gerard de Haan, Andreia Moço
2018-05-25

blood volume variations (BVVs)dermal arterioles and subcutaneous BVVsmultilayered skin Monte Carlo simulationsremote photoplethysmography (remote PPG)visible and infrared wavelengths (450-1000 nm)
Abstract Remote photoplethysmography (PPG) is an optical measurement technique with established applications in vital signs monitoring. Recently, the consensual understanding of blood volume variations (BVVs) as the origin of PPG signals was challenged, raising validity concerns about the remote SpO 2 methodology. Recognizing the imperative for new opto-physiological evidence, this investigation supports the volumetric hypothesis with living skin experiments and Monte Carlo simulations of remote PPG-amplitude in visible light (VIS) and infrared (IR). Multilayered models of the skin were developed to simulate the separate contributions from skin layers containing pulsatile arterioles to the PPG signal in the 450–1000 nm range. The simulated spectra were qualitatively compared with observations of the resting and compressed finger pad, and complemented with videocapillaroscopy. Our results indicate that remote PPG systems indeed probe arterial blood. Green wavelengths probe dermal arterioles while red-IR wavelengths also reach subcutaneous BVVs. Owing to stable penetration depths, the red-IR diagnostic window promotes the invariance of SpO 2 measurements to skin non-homogeneities.
1
Living skin experiments and Monte Carlo simulations support the volumetric hypothesis that blood volume variations (BVVs) are the origin of remote PPG signals.
2
Red to near-infrared (IR) wavelengths penetrate deeper and additionally probe subcutaneous blood volume variations, contributing to IR remote PPG signals.
3
Simulated multilayer skin models show that green wavelengths predominantly probe dermal arterioles contributing to visible-light remote PPG signals.
4
Stable penetration depths in the red-IR diagnostic window make SpO2 measurements more invariant to skin non-homogeneities.
5
The simulated spectra qualitatively match observations from resting and compressed finger pad measurements and videocapillaroscopy.

Remote photoplethysmography (PPG) signals measured in visible (450–700 nm) and infrared (700–1000 nm) wavelengths from skin (including dermal arterioles and subcutaneous blood volume variations)

Origin and wavelength-dependent tissue-depth contributions of the PPG signal—specifically whether PPG arises from blood volume variations in dermal arterioles versus subcutaneous BVVs, and how VIS (green) versus red–IR wavelengths probe these layers affecting remote SpO2 measurement invariance

Publication Details
Publication Date
2018-05-25
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Sander Stuijk
Gerard de Haan
Andreia Moço
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%