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Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber

In this study, a wavelength shifting fiber that shifts ultra-violet and blue light to green light was employed as a sensor probe of a fiber-optic Cerenkov radiation sensor. In order to characterize Cerenkov radiation generated in the developed wavelength shifting fiber and a plastic optical fiber, s...

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Autores principales: Jang, Kyoung Won, Shin, Sang Hun, Kim, Seon Geun, Kim, Jae Seok, Yoo, Wook Jae, Ji, Young Hoon, Lee, Bongsoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4029631/
https://www.ncbi.nlm.nih.gov/pubmed/24755521
http://dx.doi.org/10.3390/s140407013
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author Jang, Kyoung Won
Shin, Sang Hun
Kim, Seon Geun
Kim, Jae Seok
Yoo, Wook Jae
Ji, Young Hoon
Lee, Bongsoo
author_facet Jang, Kyoung Won
Shin, Sang Hun
Kim, Seon Geun
Kim, Jae Seok
Yoo, Wook Jae
Ji, Young Hoon
Lee, Bongsoo
author_sort Jang, Kyoung Won
collection PubMed
description In this study, a wavelength shifting fiber that shifts ultra-violet and blue light to green light was employed as a sensor probe of a fiber-optic Cerenkov radiation sensor. In order to characterize Cerenkov radiation generated in the developed wavelength shifting fiber and a plastic optical fiber, spectra and intensities of Cerenkov radiation were measured with a spectrometer. The spectral peaks of light outputs from the wavelength shifting fiber and the plastic optical fiber were measured at wavelengths of 500 and 510 nm, respectively, and the intensity of transmitted light output of the wavelength shifting fiber was 22.2 times higher than that of the plastic optical fiber. Also, electron fluxes and total energy depositions of gamma-ray beams generated from a Co-60 therapy unit were calculated according to water depths using the Monte Carlo N-particle transport code. The relationship between the fluxes of electrons over the Cerenkov threshold energy and the energy depositions of gamma-ray beams from the Co-60 unit is a near-identity function. Finally, percentage depth doses for the gamma-ray beams were obtained using the fiber-optic Cerenkov radiation sensor, and the results were compared with those obtained by an ionization chamber. The average dose difference between the results of the fiber-optic Cerenkov radiation sensor and those of the ionization chamber was about 2.09%.
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spelling pubmed-40296312014-05-22 Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber Jang, Kyoung Won Shin, Sang Hun Kim, Seon Geun Kim, Jae Seok Yoo, Wook Jae Ji, Young Hoon Lee, Bongsoo Sensors (Basel) Article In this study, a wavelength shifting fiber that shifts ultra-violet and blue light to green light was employed as a sensor probe of a fiber-optic Cerenkov radiation sensor. In order to characterize Cerenkov radiation generated in the developed wavelength shifting fiber and a plastic optical fiber, spectra and intensities of Cerenkov radiation were measured with a spectrometer. The spectral peaks of light outputs from the wavelength shifting fiber and the plastic optical fiber were measured at wavelengths of 500 and 510 nm, respectively, and the intensity of transmitted light output of the wavelength shifting fiber was 22.2 times higher than that of the plastic optical fiber. Also, electron fluxes and total energy depositions of gamma-ray beams generated from a Co-60 therapy unit were calculated according to water depths using the Monte Carlo N-particle transport code. The relationship between the fluxes of electrons over the Cerenkov threshold energy and the energy depositions of gamma-ray beams from the Co-60 unit is a near-identity function. Finally, percentage depth doses for the gamma-ray beams were obtained using the fiber-optic Cerenkov radiation sensor, and the results were compared with those obtained by an ionization chamber. The average dose difference between the results of the fiber-optic Cerenkov radiation sensor and those of the ionization chamber was about 2.09%. MDPI 2014-04-21 /pmc/articles/PMC4029631/ /pubmed/24755521 http://dx.doi.org/10.3390/s140407013 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Jang, Kyoung Won
Shin, Sang Hun
Kim, Seon Geun
Kim, Jae Seok
Yoo, Wook Jae
Ji, Young Hoon
Lee, Bongsoo
Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber
title Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber
title_full Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber
title_fullStr Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber
title_full_unstemmed Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber
title_short Measurement of Cerenkov Radiation Induced by the Gamma-Rays of Co-60 Therapy Units Using Wavelength Shifting Fiber
title_sort measurement of cerenkov radiation induced by the gamma-rays of co-60 therapy units using wavelength shifting fiber
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4029631/
https://www.ncbi.nlm.nih.gov/pubmed/24755521
http://dx.doi.org/10.3390/s140407013
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