Design of Multi-Wavelength Optical Sensor Module for Depth-Dependent Photoplethysmography

被引:22
作者
Han, Sangjin [1 ]
Roh, Donggeun [1 ]
Park, Junyung [1 ]
Shin, Hangsik [1 ]
机构
[1] Chonnam Natl Univ, Dept Biomed Engn, Yeosu 59626, South Korea
基金
新加坡国家研究基金会;
关键词
blood volume; light penetration; multiple wavelength; optical sensor; photoplethysmography;
D O I
10.3390/s19245441
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The multi-wavelength photoplethysmography sensors were introduced to measure depth-dependent blood volume based on that concept that the longer the light wavelength, the deeper the penetration depth near visible spectrum band. In this study, we propose an omnidirectional optical sensor module that can measure photoplethysmogram while using multiple wavelengths, and describe implementation detail. The developed sensor is manufactured by making a hole in a metal plate and mounting an LED therein, and it has four wavelength LEDs of blue (460 nm), green (530 nm), red (660 nm), and IR (940 nm), being arranged concentrically around a photodetector. Irradiation light intensity was measured by photoluminescent test, and photoplethymogram was measured with each wavelength simultaneously at a periphery of the human body such as fingertip, earlobe, toe, forehead, and wrist, in order to evaluate the developed sensor. As a result, the developed sensor module showed a linear increase of irradiating light intensity according to the number of LEDs increases, and pulsatile waveforms were observed at all four wavelengths in all measuring sites.
引用
收藏
页数:11
相关论文
共 15 条
[1]   Photoplethysmography and its application in clinical physiological measurement [J].
Allen, John .
PHYSIOLOGICAL MEASUREMENT, 2007, 28 (03) :R1-R39
[2]  
Avci P, 2013, SEMIN CUTAN MED SURG, V32, P41
[3]  
Baek HJ, 2010, CAIRO INT BIOM ENG, P244, DOI 10.1109/CIBEC.2010.5716070
[4]   Monte Carlo Analysis of Optical Interactions in Reflectance and Transmittance Finger Photoplethysmography [J].
Chatterjee, Subhasri ;
Kyriacou, Panayiotis A. .
SENSORS, 2019, 19 (04)
[5]   ESTIMATION OF OPTICAL PATHLENGTH THROUGH TISSUE FROM DIRECT TIME OF FLIGHT MEASUREMENT [J].
DELPY, DT ;
COPE, M ;
VANDERZEE, P ;
ARRIDGE, S ;
WRAY, S ;
WYATT, J .
PHYSICS IN MEDICINE AND BIOLOGY, 1988, 33 (12) :1433-1442
[6]  
Ingle Jr J.D., 1988, Spectrochemical Analysis
[7]   Multi-Wavelength Photoplethysmography Enabling Continuous Blood Pressure Measurement With Compact Wearable Electronics [J].
Liu, Jing ;
Yan, Bryan P. ;
Zhang, Yuan-Ting ;
Ding, Xiao-Rong ;
Su, Peng ;
Zhao, Ni .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 2019, 66 (06) :1514-1525
[8]  
Liu J, 2016, IEEE ENG MED BIO, P615, DOI 10.1109/EMBC.2016.7590777
[9]   Multi-wavelength photoplethysmography method for skin arterial pulse extraction [J].
Liu, Jing ;
Yan, Bryan Ping-Yen ;
Dai, Wen-Xuan ;
Ding, Xiao-Rong ;
Zhang, Yuan-Ting ;
Zhao, Ni .
BIOMEDICAL OPTICS EXPRESS, 2016, 7 (10) :4313-4326
[10]  
Liu J, 2015, IEEE ENG MED BIO, P5973, DOI 10.1109/EMBC.2015.7319752