A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating Room

Advancements in image-processing and medical imaging technologies and other research areas have resulted in the growing importance of surgical navigation systems in the field of minimally invasive surgery. However, sophisticated auxiliary equipment is a prerequisite for full heart-rate monitoring in...

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Main Authors: Hongwei Yue, Xiaorong Li, Hongtao Wang, Huazhou Chen, Xiaojun Wang, Ken Cai
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8782471/
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spelling doaj-54ed8a5536f947ee8838ce4c308290b32021-04-05T17:22:26ZengIEEEIEEE Access2169-35362019-01-01711228411229410.1109/ACCESS.2019.29322048782471A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating RoomHongwei Yue0Xiaorong Li1Hongtao Wang2Huazhou Chen3Xiaojun Wang4Ken Cai5https://orcid.org/0000-0002-8892-8406Faculty of Intelligent Manufacturing, Wuyi University, Jiangmen, ChinaDepartment of Radiology, General Hospital of Southern Theater Command, PLA, Guangzhou, ChinaFaculty of Intelligent Manufacturing, Wuyi University, Jiangmen, ChinaCollege of Science, Guilin University of Technology, Guilin, ChinaIndustrial Training Center, Guangdong Polytechnic Normal University, Guangzhou, ChinaCollege of Automation, Zhongkai University of Agriculture and Engineering, Guangzhou, ChinaAdvancements in image-processing and medical imaging technologies and other research areas have resulted in the growing importance of surgical navigation systems in the field of minimally invasive surgery. However, sophisticated auxiliary equipment is a prerequisite for full heart-rate monitoring in operative systems. A system puts forward to address this issue with a wireless sensor network architecture comprising acquisition modules, router gateways, remote servers, and a medical monitoring center. Factors such as variations in ambient light and face shaking can also easily affect heart rate detection based on face videos, thus resulting in inaccurate estimations of heart rate from the blood volume pulse (BVP) signals. This study proposes to address this concern by employing a novel method for non-contact heart rate estimation to overcome noise interference. First, chrominance features are selected to extract BVP signals, and the low-rank and sparse matrix decomposition methods are applied to overcome the detrimental effects of noise and interference while ensuring that valuable data are preserved.Next, the data are relayed to the server via the gateway. Finally, users can log on to the health-related cloud platform and gain information regarding their health status in real time. Experimental results reveal the advantages of the proposed technique over conventional face-based heart-rate estimation methods, including the capability to decrease dependence on sophisticated auxiliary equipment, avoid direct skin contact that can cause discomfort to patients undergoing surgery, and improve the comfort of surgical operations. Moreover, the proposed heart-rate measurement technique can contribute to improve the construction of smart cities.https://ieeexplore.ieee.org/document/8782471/Smart cityphotoplethysmographychrominance featuresheart-rate detectionlow-rank and sparse matrices
collection DOAJ
language English
format Article
sources DOAJ
author Hongwei Yue
Xiaorong Li
Hongtao Wang
Huazhou Chen
Xiaojun Wang
Ken Cai
spellingShingle Hongwei Yue
Xiaorong Li
Hongtao Wang
Huazhou Chen
Xiaojun Wang
Ken Cai
A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating Room
IEEE Access
Smart city
photoplethysmography
chrominance features
heart-rate detection
low-rank and sparse matrices
author_facet Hongwei Yue
Xiaorong Li
Hongtao Wang
Huazhou Chen
Xiaojun Wang
Ken Cai
author_sort Hongwei Yue
title A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating Room
title_short A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating Room
title_full A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating Room
title_fullStr A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating Room
title_full_unstemmed A New Approach for Noncontact Imaging Photoplethysmography Using Chrominance Features and Low-Rank in the IoT Operating Room
title_sort new approach for noncontact imaging photoplethysmography using chrominance features and low-rank in the iot operating room
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Advancements in image-processing and medical imaging technologies and other research areas have resulted in the growing importance of surgical navigation systems in the field of minimally invasive surgery. However, sophisticated auxiliary equipment is a prerequisite for full heart-rate monitoring in operative systems. A system puts forward to address this issue with a wireless sensor network architecture comprising acquisition modules, router gateways, remote servers, and a medical monitoring center. Factors such as variations in ambient light and face shaking can also easily affect heart rate detection based on face videos, thus resulting in inaccurate estimations of heart rate from the blood volume pulse (BVP) signals. This study proposes to address this concern by employing a novel method for non-contact heart rate estimation to overcome noise interference. First, chrominance features are selected to extract BVP signals, and the low-rank and sparse matrix decomposition methods are applied to overcome the detrimental effects of noise and interference while ensuring that valuable data are preserved.Next, the data are relayed to the server via the gateway. Finally, users can log on to the health-related cloud platform and gain information regarding their health status in real time. Experimental results reveal the advantages of the proposed technique over conventional face-based heart-rate estimation methods, including the capability to decrease dependence on sophisticated auxiliary equipment, avoid direct skin contact that can cause discomfort to patients undergoing surgery, and improve the comfort of surgical operations. Moreover, the proposed heart-rate measurement technique can contribute to improve the construction of smart cities.
topic Smart city
photoplethysmography
chrominance features
heart-rate detection
low-rank and sparse matrices
url https://ieeexplore.ieee.org/document/8782471/
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