Literature DB >> 35991927

Skin tissue perfusion mapping triggered by an audio-(de)modulated reference signal.

Stefan Borik1, Patrik Procka1, Jakub Kubicek1, Christoph Hoog Antink2.   

Abstract

Spatial mapping of skin perfusion provides essential information about physiological processes that are often hidden from the eyes of the examining physician. The perfusion map quality depends on several key factors, such as the camera system type, frame rate, sensitivity, or signal-to-noise ratio. When investigating physiological parameters, the reference signal allows for increasing the spatial resolution of the photoplethysmography imaging (PPGI) system. On the other hand, it increases the system complexity and the synchronization prerequisites. Our solution is a hardware device that modulates the reference biosignal into the audio frequency band. This signal is connected to the mic input of a digital camera or a smartphone, enabling the transformation of such a device into a PPGI measurement system even in the case of compressed video recording using lock-in amplification technique. It also brings the possibility of synchronous recording of PPGI and another reference signal such as conventional photoplethysmogram or electrocardiogram.
© 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.

Entities:  

Year:  2022        PMID: 35991927      PMCID: PMC9352299          DOI: 10.1364/BOE.461087

Source DB:  PubMed          Journal:  Biomed Opt Express        ISSN: 2156-7085            Impact factor:   3.562


  17 in total

1.  Advancements in noncontact, multiparameter physiological measurements using a webcam.

Authors:  Ming-Zher Poh; Daniel J McDuff; Rosalind W Picard
Journal:  IEEE Trans Biomed Eng       Date:  2010-10-14       Impact factor: 4.538

2.  Improved motion robustness of remote-PPG by using the blood volume pulse signature.

Authors:  G de Haan; A van Leest
Journal:  Physiol Meas       Date:  2014-08-27       Impact factor: 2.833

3.  Wireless transmission of ECG signal.

Authors:  Nihal Fatma Güler; Uğur Fidan
Journal:  J Med Syst       Date:  2006-06       Impact factor: 4.460

4.  Coordination dynamics of circulatory and respiratory rhythms during psychomotor drive reduction.

Authors:  V Perlitz; B Cotuk; M Lambertz; R Grebe; G Schiepek; E R Petzold; H Schmid-Schönbein; G Flatten
Journal:  Auton Neurosci       Date:  2004-09-30       Impact factor: 3.145

5.  Algorithmic Principles of Remote PPG.

Authors:  Wenjin Wang; Albertus C den Brinker; Sander Stuijk; Gerard de Haan
Journal:  IEEE Trans Biomed Eng       Date:  2016-09-13       Impact factor: 4.538

6.  Hybrid optical imaging technology for long-term remote monitoring of skin perfusion and temperature behavior.

Authors:  Nikolai Blanik; Abbas K Abbas; Boudewijn Venema; Vladimir Blazek; Steffen Leonhardt
Journal:  J Biomed Opt       Date:  2014-01       Impact factor: 3.170

7.  Remote plethysmographic imaging using ambient light.

Authors:  Wim Verkruysse; Lars O Svaasand; J Stuart Nelson
Journal:  Opt Express       Date:  2008-12-22       Impact factor: 3.894

8.  Noncontact imaging photoplethysmography to effectively access pulse rate variability.

Authors:  Yu Sun; Sijung Hu; Vicente Azorin-Peris; Roy Kalawsky; Stephen Greenwald
Journal:  J Biomed Opt       Date:  2013-06       Impact factor: 3.170

9.  Ventricular dyssynchrony assessment using ultra-high frequency ECG technique.

Authors:  Pavel Jurak; Josef Halamek; Jaroslav Meluzin; Filip Plesinger; Tereza Postranecka; Jolana Lipoldova; Miroslav Novak; Vlastimil Vondra; Ivo Viscor; Ladislav Soukup; Petr Klimes; Petr Vesely; Josef Sumbera; Karel Zeman; Roshini S Asirvatham; Jason Tri; Samuel J Asirvatham; Pavel Leinveber
Journal:  J Interv Card Electrophysiol       Date:  2017-07-10       Impact factor: 1.900

Review 10.  The use of photoplethysmography for assessing hypertension.

Authors:  Mohamed Elgendi; Richard Fletcher; Yongbo Liang; Newton Howard; Nigel H Lovell; Derek Abbott; Kenneth Lim; Rabab Ward
Journal:  NPJ Digit Med       Date:  2019-06-26
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