Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical Experiments

Temperature sensitivity of the fluorescence intensity of the organic dyes solutions was used for noncontact measurement of the electromagnetic millimeter wave absorption in water. By using two different dyes with opposite temperature effects, local temperature increase in the capillary that is place...

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Main Authors: Nataliia Kuzkova, Oleksandr Popenko, Andrey Yakunov
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:International Journal of Biomedical Imaging
Online Access:http://dx.doi.org/10.1155/2014/243564
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author Nataliia Kuzkova
Oleksandr Popenko
Andrey Yakunov
author_facet Nataliia Kuzkova
Oleksandr Popenko
Andrey Yakunov
author_sort Nataliia Kuzkova
collection DOAJ
description Temperature sensitivity of the fluorescence intensity of the organic dyes solutions was used for noncontact measurement of the electromagnetic millimeter wave absorption in water. By using two different dyes with opposite temperature effects, local temperature increase in the capillary that is placed inside a rectangular waveguide in which millimeter waves propagate was defined. The application of this noncontact temperature sensing is a simple and novel method to detect temperature change in small biological objects.
format Article
id doaj-art-b7924de2195141a791ee9aa3304b2700
institution Kabale University
issn 1687-4188
1687-4196
language English
publishDate 2014-01-01
publisher Wiley
record_format Article
series International Journal of Biomedical Imaging
spelling doaj-art-b7924de2195141a791ee9aa3304b27002025-02-03T06:05:08ZengWileyInternational Journal of Biomedical Imaging1687-41881687-41962014-01-01201410.1155/2014/243564243564Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical ExperimentsNataliia Kuzkova0Oleksandr Popenko1Andrey Yakunov2Physics Department, Taras Shevchenko National University of Kyiv, Building No. 1, 4 Glushkova Avenue, Kiev 03127, UkrainePhysics Department, Taras Shevchenko National University of Kyiv, Building No. 1, 4 Glushkova Avenue, Kiev 03127, UkrainePhysics Department, Taras Shevchenko National University of Kyiv, Building No. 1, 4 Glushkova Avenue, Kiev 03127, UkraineTemperature sensitivity of the fluorescence intensity of the organic dyes solutions was used for noncontact measurement of the electromagnetic millimeter wave absorption in water. By using two different dyes with opposite temperature effects, local temperature increase in the capillary that is placed inside a rectangular waveguide in which millimeter waves propagate was defined. The application of this noncontact temperature sensing is a simple and novel method to detect temperature change in small biological objects.http://dx.doi.org/10.1155/2014/243564
spellingShingle Nataliia Kuzkova
Oleksandr Popenko
Andrey Yakunov
Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical Experiments
International Journal of Biomedical Imaging
title Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical Experiments
title_full Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical Experiments
title_fullStr Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical Experiments
title_full_unstemmed Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical Experiments
title_short Application of Temperature-Dependent Fluorescent Dyes to the Measurement of Millimeter Wave Absorption in Water Applied to Biomedical Experiments
title_sort application of temperature dependent fluorescent dyes to the measurement of millimeter wave absorption in water applied to biomedical experiments
url http://dx.doi.org/10.1155/2014/243564
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AT oleksandrpopenko applicationoftemperaturedependentfluorescentdyestothemeasurementofmillimeterwaveabsorptioninwaterappliedtobiomedicalexperiments
AT andreyyakunov applicationoftemperaturedependentfluorescentdyestothemeasurementofmillimeterwaveabsorptioninwaterappliedtobiomedicalexperiments