Detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies

The evaluation of the microcirculatory bed functional state and the identification of angiospastic disorders with related complications, when the pathological changes are reversible, have an important role in medical practice. The aim of this study was to evaluate the possibility of using optical no...

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Main Authors: Irina N. Makovik, Andrey V. Dunaev, Victor V. Dremin, Alexander I. Krupatkin, Viktor V. Sidorov, Lyudmila S. Khakhicheva, Vadim F. Muradyan, Olga V. Pilipenko, Ilya E. Rafailov, Karina S. Litvinova
Format: Article
Language:English
Published: World Scientific Publishing 2018-01-01
Series:Journal of Innovative Optical Health Sciences
Subjects:
Online Access:http://www.worldscientific.com/doi/pdf/10.1142/S179354581750016X
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author Irina N. Makovik
Andrey V. Dunaev
Victor V. Dremin
Alexander I. Krupatkin
Viktor V. Sidorov
Lyudmila S. Khakhicheva
Vadim F. Muradyan
Olga V. Pilipenko
Ilya E. Rafailov
Karina S. Litvinova
spellingShingle Irina N. Makovik
Andrey V. Dunaev
Victor V. Dremin
Alexander I. Krupatkin
Viktor V. Sidorov
Lyudmila S. Khakhicheva
Vadim F. Muradyan
Olga V. Pilipenko
Ilya E. Rafailov
Karina S. Litvinova
Detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies
Journal of Innovative Optical Health Sciences
Noninvasive diagnostics
laser Doppler flowmetry
tissue reflectance oximetry
pulse oximetry
cold pressor test
microcirculatory bed
angiospasm
author_facet Irina N. Makovik
Andrey V. Dunaev
Victor V. Dremin
Alexander I. Krupatkin
Viktor V. Sidorov
Lyudmila S. Khakhicheva
Vadim F. Muradyan
Olga V. Pilipenko
Ilya E. Rafailov
Karina S. Litvinova
author_sort Irina N. Makovik
title Detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies
title_short Detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies
title_full Detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies
title_fullStr Detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies
title_full_unstemmed Detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies
title_sort detection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologies
publisher World Scientific Publishing
series Journal of Innovative Optical Health Sciences
issn 1793-5458
1793-7205
publishDate 2018-01-01
description The evaluation of the microcirculatory bed functional state and the identification of angiospastic disorders with related complications, when the pathological changes are reversible, have an important role in medical practice. The aim of this study was to evaluate the possibility of using optical noninvasive methods and the cold pressor test to solve this problem. A total of 33 patients with rheumatological diseases and 32 healthy volunteers were included in the study. Laser Doppler flowmetry, tissue reflectance oximetry and pulse oximetry were used as optical noninvasive methods. The parameters were recorded before, immediately after and 20min after the cold pressor test. Based on the measured parameters, the complex parameters of the microcirculatory bed were calculated. A detailed statistical analysis of the parameter changes for each individual in the two groups displayed diverse microcirculatory bed parameter responses upon cold exposure, with differing recovery of parameters after CPT. New diagnostic criteria were proposed for the identification of angiospastic disorders. According to the proposed criteria, 27 people of the volunteers group were confirmed to not display any disorders. In the patient group, however, 18 people were observed to have a relatively normal functional state of the microcirculatory bed, while 15 people were observed to have a possible tendency to angiospasm. To highlight the differences between a relatively normal state and presence of angiospastic disorders, statistical analysis of experimental data was carried out, which revealed significant differences. Further analysis of data with angiospastic disorders identified a relationship between their diagnoses and the results of laboratory studies. Thus, the evaluation of combined noninvasive optical diagnostic method use, the cold pressor test and proposed diagnostic criteria showed a positive result. This approach can be used to detect the presence of possible angiospastic disorders and related complications, as well as microcirculatory bed disorders against the background of other diseases.
topic Noninvasive diagnostics
laser Doppler flowmetry
tissue reflectance oximetry
pulse oximetry
cold pressor test
microcirculatory bed
angiospasm
url http://www.worldscientific.com/doi/pdf/10.1142/S179354581750016X
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spelling doaj-217b242592a04824b788be1b603501c02020-11-25T00:40:37ZengWorld Scientific PublishingJournal of Innovative Optical Health Sciences1793-54581793-72052018-01-011111750016-11750016-1510.1142/S179354581750016X10.1142/S179354581750016XDetection of angiospastic disorders in the microcirculatory bed using laser diagnostics technologiesIrina N. Makovik0Andrey V. Dunaev1Victor V. Dremin2Alexander I. Krupatkin3Viktor V. Sidorov4Lyudmila S. Khakhicheva5Vadim F. Muradyan6Olga V. Pilipenko7Ilya E. Rafailov8Karina S. Litvinova9Biomedical Photonics Instrumentation Group, Scientific-Educational Centre of “Biomedical Engineering”, Orel State University named after I. S. Turgenev, Orel 302026, Russian FederationBiomedical Photonics Instrumentation Group, Scientific-Educational Centre of “Biomedical Engineering”, Orel State University named after I. S. Turgenev, Orel 302026, Russian FederationBiomedical Photonics Instrumentation Group, Scientific-Educational Centre of “Biomedical Engineering”, Orel State University named after I. S. Turgenev, Orel 302026, Russian FederationPriorov Central Research Institute of Traumatology and Orthopaedics, Moscow 127299, Russian FederationSPE “LAZMA” Ltd, Moscow 125252, Russian FederationOrel Regional Clinical Hospital, Orel 302028, Russian FederationOrel Regional Clinical Hospital, Orel 302028, Russian FederationBiomedical Photonics Instrumentation Group, Scientific-Educational Centre of “Biomedical Engineering”, Orel State University named after I. S. Turgenev, Orel 302026, Russian FederationSchool of Engineering and Applied Sciences, Aston Institute of Photonic Technologies, Aston University, Birmingham, B4 7ET, UKOptoelectronics and Biomedical Photonics Group, Aston Institute of Photonic Technologies, Aston University, Birmingham, B4 7ET, UKThe evaluation of the microcirculatory bed functional state and the identification of angiospastic disorders with related complications, when the pathological changes are reversible, have an important role in medical practice. The aim of this study was to evaluate the possibility of using optical noninvasive methods and the cold pressor test to solve this problem. A total of 33 patients with rheumatological diseases and 32 healthy volunteers were included in the study. Laser Doppler flowmetry, tissue reflectance oximetry and pulse oximetry were used as optical noninvasive methods. The parameters were recorded before, immediately after and 20min after the cold pressor test. Based on the measured parameters, the complex parameters of the microcirculatory bed were calculated. A detailed statistical analysis of the parameter changes for each individual in the two groups displayed diverse microcirculatory bed parameter responses upon cold exposure, with differing recovery of parameters after CPT. New diagnostic criteria were proposed for the identification of angiospastic disorders. According to the proposed criteria, 27 people of the volunteers group were confirmed to not display any disorders. In the patient group, however, 18 people were observed to have a relatively normal functional state of the microcirculatory bed, while 15 people were observed to have a possible tendency to angiospasm. To highlight the differences between a relatively normal state and presence of angiospastic disorders, statistical analysis of experimental data was carried out, which revealed significant differences. Further analysis of data with angiospastic disorders identified a relationship between their diagnoses and the results of laboratory studies. Thus, the evaluation of combined noninvasive optical diagnostic method use, the cold pressor test and proposed diagnostic criteria showed a positive result. This approach can be used to detect the presence of possible angiospastic disorders and related complications, as well as microcirculatory bed disorders against the background of other diseases.http://www.worldscientific.com/doi/pdf/10.1142/S179354581750016XNoninvasive diagnosticslaser Doppler flowmetrytissue reflectance oximetrypulse oximetrycold pressor testmicrocirculatory bedangiospasm