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Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms

Numerous diseases such as hemorrhage, sepsis or cardiogenic shock induce a heterogeneous perfusion of the capillaries. To detect such alterations in the human blood flow pattern, diagnostic devices must provide an appropriately high spatial resolution. Shifted position-diffuse reflectance imaging (S...

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Autores principales: Späth, Moritz, Romboy, Alexander, Nzenwata, Ijeoma, Rohde, Maximilian, Ni, Dongqin, Ackermann, Lisa, Stelzle, Florian, Hohmann, Martin, Klämpfl, Florian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9783365/
https://www.ncbi.nlm.nih.gov/pubmed/36560250
http://dx.doi.org/10.3390/s22249880
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author Späth, Moritz
Romboy, Alexander
Nzenwata, Ijeoma
Rohde, Maximilian
Ni, Dongqin
Ackermann, Lisa
Stelzle, Florian
Hohmann, Martin
Klämpfl, Florian
author_facet Späth, Moritz
Romboy, Alexander
Nzenwata, Ijeoma
Rohde, Maximilian
Ni, Dongqin
Ackermann, Lisa
Stelzle, Florian
Hohmann, Martin
Klämpfl, Florian
author_sort Späth, Moritz
collection PubMed
description Numerous diseases such as hemorrhage, sepsis or cardiogenic shock induce a heterogeneous perfusion of the capillaries. To detect such alterations in the human blood flow pattern, diagnostic devices must provide an appropriately high spatial resolution. Shifted position-diffuse reflectance imaging (SP-DRI) has the potential to do so; it is an all-optical diagnostic technique. So far, SP-DRI has mainly been developed using Monte Carlo simulations. The present study is therefore validating this algorithm experimentally on realistic optical phantoms with thread structures down to 10 μm in diameter; a SP-DRI sensor prototype was developed and realized by means of additive manufacturing. SP-DRI turned out to be functional within this experimental framework. The position of the structures within the optical phantoms become clearly visible using SP-DRI, and the structure thickness is reflected as modulation in the SP-DRI signal amplitude; this performed well for a shift along the x axis as well as along the y axis. Moreover, SP-DRI successfully masked the pronounced influence of the illumination cone on the data. The algorithm showed significantly superior to a mere raw data inspection. Within the scope of the study, the constructive design of the SP-DRI sensor prototype is discussed and potential for improvement is explored.
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spelling pubmed-97833652022-12-24 Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms Späth, Moritz Romboy, Alexander Nzenwata, Ijeoma Rohde, Maximilian Ni, Dongqin Ackermann, Lisa Stelzle, Florian Hohmann, Martin Klämpfl, Florian Sensors (Basel) Article Numerous diseases such as hemorrhage, sepsis or cardiogenic shock induce a heterogeneous perfusion of the capillaries. To detect such alterations in the human blood flow pattern, diagnostic devices must provide an appropriately high spatial resolution. Shifted position-diffuse reflectance imaging (SP-DRI) has the potential to do so; it is an all-optical diagnostic technique. So far, SP-DRI has mainly been developed using Monte Carlo simulations. The present study is therefore validating this algorithm experimentally on realistic optical phantoms with thread structures down to 10 μm in diameter; a SP-DRI sensor prototype was developed and realized by means of additive manufacturing. SP-DRI turned out to be functional within this experimental framework. The position of the structures within the optical phantoms become clearly visible using SP-DRI, and the structure thickness is reflected as modulation in the SP-DRI signal amplitude; this performed well for a shift along the x axis as well as along the y axis. Moreover, SP-DRI successfully masked the pronounced influence of the illumination cone on the data. The algorithm showed significantly superior to a mere raw data inspection. Within the scope of the study, the constructive design of the SP-DRI sensor prototype is discussed and potential for improvement is explored. MDPI 2022-12-15 /pmc/articles/PMC9783365/ /pubmed/36560250 http://dx.doi.org/10.3390/s22249880 Text en © 2022 by the authors. 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
Späth, Moritz
Romboy, Alexander
Nzenwata, Ijeoma
Rohde, Maximilian
Ni, Dongqin
Ackermann, Lisa
Stelzle, Florian
Hohmann, Martin
Klämpfl, Florian
Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms
title Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms
title_full Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms
title_fullStr Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms
title_full_unstemmed Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms
title_short Experimental Validation of Shifted Position-Diffuse Reflectance Imaging (SP-DRI) on Optical Phantoms
title_sort experimental validation of shifted position-diffuse reflectance imaging (sp-dri) on optical phantoms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9783365/
https://www.ncbi.nlm.nih.gov/pubmed/36560250
http://dx.doi.org/10.3390/s22249880
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