Cargando…

Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza

Background: In the last two decades, infrared thermography (IRT) has been applied in quarantine stations for the screening of patients with suspected infectious disease. However, the fever-based screening procedure employing IRT suffers from low sensitivity, because monitoring body temperature alone...

Descripción completa

Detalles Bibliográficos
Autores principales: Negishi, Toshiaki, Abe, Shigeto, Matsui, Takemi, Liu, He, Kurosawa, Masaki, Kirimoto, Tetsuo, Sun, Guanghao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7218727/
https://www.ncbi.nlm.nih.gov/pubmed/32294973
http://dx.doi.org/10.3390/s20082171
_version_ 1783532854809985024
author Negishi, Toshiaki
Abe, Shigeto
Matsui, Takemi
Liu, He
Kurosawa, Masaki
Kirimoto, Tetsuo
Sun, Guanghao
author_facet Negishi, Toshiaki
Abe, Shigeto
Matsui, Takemi
Liu, He
Kurosawa, Masaki
Kirimoto, Tetsuo
Sun, Guanghao
author_sort Negishi, Toshiaki
collection PubMed
description Background: In the last two decades, infrared thermography (IRT) has been applied in quarantine stations for the screening of patients with suspected infectious disease. However, the fever-based screening procedure employing IRT suffers from low sensitivity, because monitoring body temperature alone is insufficient for detecting infected patients. To overcome the drawbacks of fever-based screening, this study aims to develop and evaluate a multiple vital sign (i.e., body temperature, heart rate and respiration rate) measurement system using RGB-thermal image sensors. Methods: The RGB camera measures blood volume pulse (BVP) through variations in the light absorption from human facial areas. IRT is used to estimate the respiration rate by measuring the change in temperature near the nostrils or mouth accompanying respiration. To enable a stable and reliable system, the following image and signal processing methods were proposed and implemented: (1) an RGB-thermal image fusion approach to achieve highly reliable facial region-of-interest tracking, (2) a heart rate estimation method including a tapered window for reducing noise caused by the face tracker, reconstruction of a BVP signal with three RGB channels to optimize a linear function, thereby improving the signal-to-noise ratio and multiple signal classification (MUSIC) algorithm for estimating the pseudo-spectrum from limited time-domain BVP signals within 15 s and (3) a respiration rate estimation method implementing nasal or oral breathing signal selection based on signal quality index for stable measurement and MUSIC algorithm for rapid measurement. We tested the system on 22 healthy subjects and 28 patients with seasonal influenza, using the support vector machine (SVM) classification method. Results: The body temperature, heart rate and respiration rate measured in a non-contact manner were highly similarity to those measured via contact-type reference devices (i.e., thermometer, ECG and respiration belt), with Pearson correlation coefficients of 0.71, 0.87 and 0.87, respectively. Moreover, the optimized SVM model with three vital signs yielded sensitivity and specificity values of 85.7% and 90.1%, respectively. Conclusion: For contactless vital sign measurement, the system achieved a performance similar to that of the reference devices. The multiple vital sign-based screening achieved higher sensitivity than fever-based screening. Thus, this system represents a promising alternative for further quarantine procedures to prevent the spread of infectious diseases.
format Online
Article
Text
id pubmed-7218727
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-72187272020-05-22 Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza Negishi, Toshiaki Abe, Shigeto Matsui, Takemi Liu, He Kurosawa, Masaki Kirimoto, Tetsuo Sun, Guanghao Sensors (Basel) Article Background: In the last two decades, infrared thermography (IRT) has been applied in quarantine stations for the screening of patients with suspected infectious disease. However, the fever-based screening procedure employing IRT suffers from low sensitivity, because monitoring body temperature alone is insufficient for detecting infected patients. To overcome the drawbacks of fever-based screening, this study aims to develop and evaluate a multiple vital sign (i.e., body temperature, heart rate and respiration rate) measurement system using RGB-thermal image sensors. Methods: The RGB camera measures blood volume pulse (BVP) through variations in the light absorption from human facial areas. IRT is used to estimate the respiration rate by measuring the change in temperature near the nostrils or mouth accompanying respiration. To enable a stable and reliable system, the following image and signal processing methods were proposed and implemented: (1) an RGB-thermal image fusion approach to achieve highly reliable facial region-of-interest tracking, (2) a heart rate estimation method including a tapered window for reducing noise caused by the face tracker, reconstruction of a BVP signal with three RGB channels to optimize a linear function, thereby improving the signal-to-noise ratio and multiple signal classification (MUSIC) algorithm for estimating the pseudo-spectrum from limited time-domain BVP signals within 15 s and (3) a respiration rate estimation method implementing nasal or oral breathing signal selection based on signal quality index for stable measurement and MUSIC algorithm for rapid measurement. We tested the system on 22 healthy subjects and 28 patients with seasonal influenza, using the support vector machine (SVM) classification method. Results: The body temperature, heart rate and respiration rate measured in a non-contact manner were highly similarity to those measured via contact-type reference devices (i.e., thermometer, ECG and respiration belt), with Pearson correlation coefficients of 0.71, 0.87 and 0.87, respectively. Moreover, the optimized SVM model with three vital signs yielded sensitivity and specificity values of 85.7% and 90.1%, respectively. Conclusion: For contactless vital sign measurement, the system achieved a performance similar to that of the reference devices. The multiple vital sign-based screening achieved higher sensitivity than fever-based screening. Thus, this system represents a promising alternative for further quarantine procedures to prevent the spread of infectious diseases. MDPI 2020-04-13 /pmc/articles/PMC7218727/ /pubmed/32294973 http://dx.doi.org/10.3390/s20082171 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Negishi, Toshiaki
Abe, Shigeto
Matsui, Takemi
Liu, He
Kurosawa, Masaki
Kirimoto, Tetsuo
Sun, Guanghao
Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza
title Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza
title_full Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza
title_fullStr Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza
title_full_unstemmed Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza
title_short Contactless Vital Signs Measurement System Using RGB-Thermal Image Sensors and Its Clinical Screening Test on Patients with Seasonal Influenza
title_sort contactless vital signs measurement system using rgb-thermal image sensors and its clinical screening test on patients with seasonal influenza
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7218727/
https://www.ncbi.nlm.nih.gov/pubmed/32294973
http://dx.doi.org/10.3390/s20082171
work_keys_str_mv AT negishitoshiaki contactlessvitalsignsmeasurementsystemusingrgbthermalimagesensorsanditsclinicalscreeningtestonpatientswithseasonalinfluenza
AT abeshigeto contactlessvitalsignsmeasurementsystemusingrgbthermalimagesensorsanditsclinicalscreeningtestonpatientswithseasonalinfluenza
AT matsuitakemi contactlessvitalsignsmeasurementsystemusingrgbthermalimagesensorsanditsclinicalscreeningtestonpatientswithseasonalinfluenza
AT liuhe contactlessvitalsignsmeasurementsystemusingrgbthermalimagesensorsanditsclinicalscreeningtestonpatientswithseasonalinfluenza
AT kurosawamasaki contactlessvitalsignsmeasurementsystemusingrgbthermalimagesensorsanditsclinicalscreeningtestonpatientswithseasonalinfluenza
AT kirimototetsuo contactlessvitalsignsmeasurementsystemusingrgbthermalimagesensorsanditsclinicalscreeningtestonpatientswithseasonalinfluenza
AT sunguanghao contactlessvitalsignsmeasurementsystemusingrgbthermalimagesensorsanditsclinicalscreeningtestonpatientswithseasonalinfluenza