Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at ∼1.1 Meters Distance

This work demonstrates a non-contact diffuse reflectance approach with a working distance of ~1.1 meters for the potential of glucose sensing. Non-contact diffuse reflectance over 1.1-1.3 μm was developed according to a center-illumination-area-detection (CIAD) geometry. The modeled respo...

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Main Authors: Daqing Piao, John O'Hara, Satish Bukkapatnam, Sabit Ekin
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9153097/
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spelling doaj-4acaf7cc5dbd47f2bbf7950d0e2b770b2021-03-29T18:07:21ZengIEEEIEEE Photonics Journal1943-06552020-01-0112412310.1109/JPHOT.2020.30132029153097Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at &#x223C;1.1 Meters DistanceDaqing Piao0https://orcid.org/0000-0003-0922-6885John O'Hara1https://orcid.org/0000-0001-8193-1867Satish Bukkapatnam2https://orcid.org/0000-0003-3312-8222Sabit Ekin3https://orcid.org/0000-0002-9957-7752School of Electrical and Computer Engineering, Oklahoma State University, Stillwater, OK, USASchool of Electrical and Computer Engineering, Oklahoma State University, Stillwater, OK, USADepartment of Industrial and Systems Engineering, Texas A&amp;M University, College Station, TX, USASchool of Electrical and Computer Engineering, Oklahoma State University, Stillwater, OK, USAThis work demonstrates a non-contact diffuse reflectance approach with a working distance of ~1.1 meters for the potential of glucose sensing. Non-contact diffuse reflectance over 1.1-1.3 &#x03BC;m was developed according to a center-illumination-area-detection (CIAD) geometry. The modeled response of diffuse reflectance in the CIAD geometry was examined with phantoms by altering independently the size of the collection geometry and the reduced scattering and absorption properties of the medium. When applied to aqueous turbid medium containing glucose control solutions with the cumulative volume varying over three orders of magnitude, a linear relationship expected for the diffuse reflectance as a function of the medium absorption/reduced-scattering property was observed for four conditions of the glucose-medium composition that differed either in the effective glucose concentration or the host medium scattering property. The cumulation of glucose up to 17.8 mg/dL and 8.9 mg/dL in the host medium having the same optical properties resulted in linear regression slopes of 0.0032 and 0.0030, respectively. The cumulation of the glucose up to 17.8 mg/dL in an aqueous host medium that differed two folds in the reduced scattering property caused the linear regression slope to differ between 0.0032 and 0.0019. The R<sup>2</sup> values of all cases were all greater than 0.987.https://ieeexplore.ieee.org/document/9153097/Diabetesdiffuse reflectanceglucose sensinglight-tissue interactionphoton propagation in tissue
collection DOAJ
language English
format Article
sources DOAJ
author Daqing Piao
John O'Hara
Satish Bukkapatnam
Sabit Ekin
spellingShingle Daqing Piao
John O'Hara
Satish Bukkapatnam
Sabit Ekin
Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at &#x223C;1.1 Meters Distance
IEEE Photonics Journal
Diabetes
diffuse reflectance
glucose sensing
light-tissue interaction
photon propagation in tissue
author_facet Daqing Piao
John O'Hara
Satish Bukkapatnam
Sabit Ekin
author_sort Daqing Piao
title Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at &#x223C;1.1 Meters Distance
title_short Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at &#x223C;1.1 Meters Distance
title_full Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at &#x223C;1.1 Meters Distance
title_fullStr Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at &#x223C;1.1 Meters Distance
title_full_unstemmed Towards Non-Contact Glucose Sensing in Aqueous Turbid Medium at &#x223C;1.1 Meters Distance
title_sort towards non-contact glucose sensing in aqueous turbid medium at &#x223c;1.1 meters distance
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2020-01-01
description This work demonstrates a non-contact diffuse reflectance approach with a working distance of ~1.1 meters for the potential of glucose sensing. Non-contact diffuse reflectance over 1.1-1.3 &#x03BC;m was developed according to a center-illumination-area-detection (CIAD) geometry. The modeled response of diffuse reflectance in the CIAD geometry was examined with phantoms by altering independently the size of the collection geometry and the reduced scattering and absorption properties of the medium. When applied to aqueous turbid medium containing glucose control solutions with the cumulative volume varying over three orders of magnitude, a linear relationship expected for the diffuse reflectance as a function of the medium absorption/reduced-scattering property was observed for four conditions of the glucose-medium composition that differed either in the effective glucose concentration or the host medium scattering property. The cumulation of glucose up to 17.8 mg/dL and 8.9 mg/dL in the host medium having the same optical properties resulted in linear regression slopes of 0.0032 and 0.0030, respectively. The cumulation of the glucose up to 17.8 mg/dL in an aqueous host medium that differed two folds in the reduced scattering property caused the linear regression slope to differ between 0.0032 and 0.0019. The R<sup>2</sup> values of all cases were all greater than 0.987.
topic Diabetes
diffuse reflectance
glucose sensing
light-tissue interaction
photon propagation in tissue
url https://ieeexplore.ieee.org/document/9153097/
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