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July 1, 2011Journal of Biomedical Optics215 citationsOpen Access

Motion-compensated noncontact imaging photoplethysmography to monitor cardiorespiratory status during exercise

YSYu Sun

Structured PICO

Does motion-compensated noncontact imaging photoplethysmography accurately monitor heart and respiration rates during exercise compared to conventional contact sensors?

P
Population
12 volunteer subjects for main evaluation, plus 1 volunteer for continuous recording protocol
I
Intervention
Motion-compensated noncontact imaging photoplethysmography (iPPG) using a new artifact-reduction method (planar motion compensation and blind source separation)
C
Comparator
Conventional contact PPG sensors
O
Outcome
Measurement of cardiac pulse, heart rate, and respiration rate before, during, and after exercisesurrogate

A novel motion-compensated noncontact imaging photoplethysmography system can accurately monitor vital signs during physical exercise, offering a potential tool for remote physiological assessment.

Abstract

With the advance of computer and photonics technology, imaging photoplethysmography (PPG), iPPG can provide comfortable and comprehensive assessment over a wide range of anatomical locations. However, motion artifact is a major drawback in current iPPG systems, particularly in the context of clinical assessment. To overcome this issue, a new artifact-reduction method consisting of planar motion compensation and blind source separation is introduced in this study. The performance of the iPPG system was evaluated through the measurement of cardiac pulse in the hand from 12 subjects before and after 5 min of cycling exercise. Also, a 12-min continuous recording protocol consisting of repeated exercises was taken from a single volunteer. The physiological parameters (i.e., heart rate, respiration rate), derived from the images captured by the iPPG system, exhibit functional characteristics comparable to conventional contact PPG sensors. Continuous recordings from the iPPG system reveal that heart and respiration rates can be successfully tracked with the artifact reduction method even in high-intensity physical exercise situations. The outcome from this study thereby leads to a new avenue for noncontact sensing of vital signs and remote physiological assessment, with clear applications in triage and sports training.

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Cite This Study

Yu Sun (2011) studied this question.

synapsesocial.com/papers/6a1a3dc7707b23dfc4ef13b5https://doi.org/10.1117/1.3602852
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