Time of flight for photon in human skin

The time of flight for photons in human skin was measured using picosecond diode laser. Two different wavelength lasers were used - 405 nm and 510 nm. A difference for time of flight in normal skin and in nevus was observed as well as a difference for different wavelength laser irradiation was obser...

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Main Authors: Antra Dzerve, Inesa Ferulova, Alexey Lihachev, Janis Spigulis
Format: Article
Language:English
Published: Samara National Research University 2016-09-01
Series:Journal of Biomedical Photonics & Engineering
Subjects:
Online Access:http://jbpe.ssau.ru/index.php/JBPE/article/view/3044
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spelling doaj-924b8d0e97e94ff8aa420247d71fe9fd2020-11-25T01:50:30ZengSamara National Research UniversityJournal of Biomedical Photonics & Engineering2411-28442016-09-012310.18287/JBPE16.02.0303012896Time of flight for photon in human skinAntra Dzerve0Inesa Ferulova1Alexey Lihachev2Janis Spigulis3Institute of Atomic Physics and Spectroscopy, University of Latvia, Riga, LatviaInstitute of Atomic Physics and Spectroscopy, University of Latvia, Riga, LatviaInstitute of Atomic Physics and Spectroscopy, University of Latvia, Riga, LatviaInstitute of Atomic Physics and Spectroscopy, University of Latvia, Riga, LatviaThe time of flight for photons in human skin was measured using picosecond diode laser. Two different wavelength lasers were used - 405 nm and 510 nm. A difference for time of flight in normal skin and in nevus was observed as well as a difference for different wavelength laser irradiation was observed. For 405 nm laser irradiation the difference was 41 ps while comparison of time of flights skin and nevi using 510 nm irradiation showed a result of 32 ps. Results allow to conclude that the time photon travels in skin might depend on the characteristics of the medium and wavelength of the irradiation. This can be related to known data for light penetration depth in human skin for different wavelengths.http://jbpe.ssau.ru/index.php/JBPE/article/view/3044absorbtionlight impulsebiophotonicsmedical physics
collection DOAJ
language English
format Article
sources DOAJ
author Antra Dzerve
Inesa Ferulova
Alexey Lihachev
Janis Spigulis
spellingShingle Antra Dzerve
Inesa Ferulova
Alexey Lihachev
Janis Spigulis
Time of flight for photon in human skin
Journal of Biomedical Photonics & Engineering
absorbtion
light impulse
biophotonics
medical physics
author_facet Antra Dzerve
Inesa Ferulova
Alexey Lihachev
Janis Spigulis
author_sort Antra Dzerve
title Time of flight for photon in human skin
title_short Time of flight for photon in human skin
title_full Time of flight for photon in human skin
title_fullStr Time of flight for photon in human skin
title_full_unstemmed Time of flight for photon in human skin
title_sort time of flight for photon in human skin
publisher Samara National Research University
series Journal of Biomedical Photonics & Engineering
issn 2411-2844
publishDate 2016-09-01
description The time of flight for photons in human skin was measured using picosecond diode laser. Two different wavelength lasers were used - 405 nm and 510 nm. A difference for time of flight in normal skin and in nevus was observed as well as a difference for different wavelength laser irradiation was observed. For 405 nm laser irradiation the difference was 41 ps while comparison of time of flights skin and nevi using 510 nm irradiation showed a result of 32 ps. Results allow to conclude that the time photon travels in skin might depend on the characteristics of the medium and wavelength of the irradiation. This can be related to known data for light penetration depth in human skin for different wavelengths.
topic absorbtion
light impulse
biophotonics
medical physics
url http://jbpe.ssau.ru/index.php/JBPE/article/view/3044
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AT inesaferulova timeofflightforphotoninhumanskin
AT alexeylihachev timeofflightforphotoninhumanskin
AT janisspigulis timeofflightforphotoninhumanskin
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