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Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy

This work presents the design and validation of an instrument for dual-slope broadband diffuse reflectance spectroscopy. This instrument affords calibration-free, continuous-wave measurements of broadband absorbance of optically diffusive media, which may be translated into absolute absorption spect...

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Autores principales: Blaney, Giles, Donaldson, Ryan, Mushtak, Samee, Nguyen, Han, Vignale, Lydia, Fernandez, Cristianne, Pham, Thao, Sassaroli, Angelo, Fantini, Sergio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9204805/
https://www.ncbi.nlm.nih.gov/pubmed/35719895
http://dx.doi.org/10.3390/app11041757
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author Blaney, Giles
Donaldson, Ryan
Mushtak, Samee
Nguyen, Han
Vignale, Lydia
Fernandez, Cristianne
Pham, Thao
Sassaroli, Angelo
Fantini, Sergio
author_facet Blaney, Giles
Donaldson, Ryan
Mushtak, Samee
Nguyen, Han
Vignale, Lydia
Fernandez, Cristianne
Pham, Thao
Sassaroli, Angelo
Fantini, Sergio
author_sort Blaney, Giles
collection PubMed
description This work presents the design and validation of an instrument for dual-slope broadband diffuse reflectance spectroscopy. This instrument affords calibration-free, continuous-wave measurements of broadband absorbance of optically diffusive media, which may be translated into absolute absorption spectra by adding frequency-domain measurements of scattering at two wavelengths. An experiment on a strongly scattering liquid phantom (milk, water, dyes) confirms the instrument’s ability to correctly identify spectral features and measure absolute absorption. This is done by sequentially adding three dyes, each featuring a distinct spectral absorption, to the milk/water phantom. After each dye addition, the absorption spectrum is measured, and it is found to reproduce the spectral features of the added dye. Additionally, the absorption spectrum is compared to the absorption values measured with a commercial frequency-domain instrument at two wavelengths. The measured absorption of the milk/water phantom quantitatively agrees with the known water absorption spectrum (R(2) = 0.98), and the measured absorption of the milk/water/dyes phantom quantitatively agrees with the absorption measured with the frequency-domain instrument in six of eight cases. Additionally, the measured absorption spectrum correctly recovers the concentration of one dye, black India ink, for which we could accurately determine the extinction spectrum (i.e., the specific absorption per unit concentration). The instrumental methods presented in this work can find applications in quantitative spectroscopy of optically diffusive media, and particularly in near-infrared spectroscopy of biological tissue.
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spelling pubmed-92048052022-06-17 Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy Blaney, Giles Donaldson, Ryan Mushtak, Samee Nguyen, Han Vignale, Lydia Fernandez, Cristianne Pham, Thao Sassaroli, Angelo Fantini, Sergio Appl Sci (Basel) Article This work presents the design and validation of an instrument for dual-slope broadband diffuse reflectance spectroscopy. This instrument affords calibration-free, continuous-wave measurements of broadband absorbance of optically diffusive media, which may be translated into absolute absorption spectra by adding frequency-domain measurements of scattering at two wavelengths. An experiment on a strongly scattering liquid phantom (milk, water, dyes) confirms the instrument’s ability to correctly identify spectral features and measure absolute absorption. This is done by sequentially adding three dyes, each featuring a distinct spectral absorption, to the milk/water phantom. After each dye addition, the absorption spectrum is measured, and it is found to reproduce the spectral features of the added dye. Additionally, the absorption spectrum is compared to the absorption values measured with a commercial frequency-domain instrument at two wavelengths. The measured absorption of the milk/water phantom quantitatively agrees with the known water absorption spectrum (R(2) = 0.98), and the measured absorption of the milk/water/dyes phantom quantitatively agrees with the absorption measured with the frequency-domain instrument in six of eight cases. Additionally, the measured absorption spectrum correctly recovers the concentration of one dye, black India ink, for which we could accurately determine the extinction spectrum (i.e., the specific absorption per unit concentration). The instrumental methods presented in this work can find applications in quantitative spectroscopy of optically diffusive media, and particularly in near-infrared spectroscopy of biological tissue. 2021-02-02 2021-02-16 /pmc/articles/PMC9204805/ /pubmed/35719895 http://dx.doi.org/10.3390/app11041757 Text en https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Blaney, Giles
Donaldson, Ryan
Mushtak, Samee
Nguyen, Han
Vignale, Lydia
Fernandez, Cristianne
Pham, Thao
Sassaroli, Angelo
Fantini, Sergio
Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy
title Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy
title_full Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy
title_fullStr Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy
title_full_unstemmed Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy
title_short Dual-Slope Diffuse Reflectance Instrument for Calibration-Free Broadband Spectroscopy
title_sort dual-slope diffuse reflectance instrument for calibration-free broadband spectroscopy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9204805/
https://www.ncbi.nlm.nih.gov/pubmed/35719895
http://dx.doi.org/10.3390/app11041757
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