Literature DB >> 15886446

Variability in time delay between two models of pulse oximeters for deriving the photoplethysmographic signals.

Jong Yong A Foo1, Stephen J Wilson, Carolyn Dakin, Gordon Williams, Margaret-Anne Harris, David Cooper.   

Abstract

Pulse oximetry is commonly used as an arterial blood oxygen saturation (SaO2) measure. However, its other serial output, the photoplethysmography (PPG) signal, is not as well studied. Raw PPG signals can be used to estimate cardiovascular measures like pulse transit time (PTT) and possibly heart rate (HR). These timing-related measurements are heavily dependent on the minimal variability in phase delay of the PPG signals. Masimo SET Rad-9 and Novametrix Oxypleth oximeters were investigated for their PPG phase characteristics on nine healthy adults. To facilitate comparison, PPG signals were acquired from fingers on the same hand in a random fashion. Results showed that mean PTT variations acquired from the Masimo oximeter (37.89 ms) were much greater than the Novametrix (5.66 ms). Documented evidence suggests that 1 ms variation in PTT is equivalent to 1 mmHg change in blood pressure. Moreover, the PTT trend derived from the Masimo oximeter can be mistaken as obstructive sleep apnoeas based on the known criteria. HR comparison was evaluated against estimates attained from an electrocardiogram (ECG). Novametrix differed from ECG by 0.71+/-0.58% (p<0.05) while Masimo differed by 4.51+/-3.66% (p>0.05). Modern oximeters can be attractive for their improved SaO2 measurement. However, using raw PPG signals obtained directly from these oximeters for timing-related measurements warrants further investigations.

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Year:  2005        PMID: 15886446     DOI: 10.1088/0967-3334/26/4/017

Source DB:  PubMed          Journal:  Physiol Meas        ISSN: 0967-3334            Impact factor:   2.833


  6 in total

1.  Dual-channel photoplethysmography to monitor local changes in vascular stiffness.

Authors:  Jong Yong Abdiel Foo; Chu Sing Lim
Journal:  J Clin Monit Comput       Date:  2006-06-15       Impact factor: 2.502

2.  Continuous monitoring of cerebrovascular reactivity through pulse transit time and intracranial pressure.

Authors:  Xiuyun Liu; Kais Gadhoumi; Ran Xiao; Nate Tran; Peter Smielewski; Marek Czosnyka; Steven W Hetts; Nerissa Ko; Xiao Hu
Journal:  Physiol Meas       Date:  2019-01-23       Impact factor: 2.833

3.  Integration of motion correction and physiological noise regression in fMRI.

Authors:  Tyler B Jones; Peter A Bandettini; Rasmus M Birn
Journal:  Neuroimage       Date:  2008-05-21       Impact factor: 6.556

4.  Objective detection of retinal vessel pulsation.

Authors:  William H Morgan; Anmar Abdul-Rahman; Dao-Yi Yu; Martin L Hazelton; Brigid Betz-Stablein; Christopher R P Lind
Journal:  PLoS One       Date:  2015-02-02       Impact factor: 3.240

5.  Increasing accuracy of pulse transit time measurements by automated elimination of distorted photoplethysmography waves.

Authors:  Marit H N van Velzen; Arjo J Loeve; Sjoerd P Niehof; Egbert G Mik
Journal:  Med Biol Eng Comput       Date:  2017-03-30       Impact factor: 2.602

Review 6.  Timing errors and temporal uncertainty in clinical databases-A narrative review.

Authors:  Andrew J Goodwin; Danny Eytan; William Dixon; Sebastian D Goodfellow; Zakary Doherty; Robert W Greer; Alistair McEwan; Mark Tracy; Peter C Laussen; Azadeh Assadi; Mjaye Mazwi
Journal:  Front Digit Health       Date:  2022-08-18
  6 in total

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