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Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam

We developed a multichannel all-in-one phantom dosimeter system composed of nine sensing probes, a chest phantom, an image intensifier, and a complementary metal-oxide semiconductor (CMOS) image sensor to measure the dose distribution of an X-ray beam used in radiation diagnosis. Nine sensing probes...

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Autores principales: Jeon, Hyesu, Yoo, Wook Jae, Shin, Sang Hun, Kwon, Guwon, Kim, Mingeon, Kim, Hye Jin, Song, Young Beom, Jang, Kyoung Won, Youn, Won Sik, Lee, Bongsoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4701291/
https://www.ncbi.nlm.nih.gov/pubmed/26569252
http://dx.doi.org/10.3390/s151128490
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author Jeon, Hyesu
Yoo, Wook Jae
Shin, Sang Hun
Kwon, Guwon
Kim, Mingeon
Kim, Hye Jin
Song, Young Beom
Jang, Kyoung Won
Youn, Won Sik
Lee, Bongsoo
author_facet Jeon, Hyesu
Yoo, Wook Jae
Shin, Sang Hun
Kwon, Guwon
Kim, Mingeon
Kim, Hye Jin
Song, Young Beom
Jang, Kyoung Won
Youn, Won Sik
Lee, Bongsoo
author_sort Jeon, Hyesu
collection PubMed
description We developed a multichannel all-in-one phantom dosimeter system composed of nine sensing probes, a chest phantom, an image intensifier, and a complementary metal-oxide semiconductor (CMOS) image sensor to measure the dose distribution of an X-ray beam used in radiation diagnosis. Nine sensing probes of the phantom dosimeter were fabricated identically by connecting a plastic scintillating fiber (PSF) to a plastic optical fiber (POF). To measure the planar dose distribution on a chest phantom according to exposure parameters used in clinical practice, we divided the top of the chest phantom into nine equal parts virtually and then installed the nine sensing probes at each center of the nine equal parts on the top of the chest phantom as measuring points. Each scintillation signal generated in the nine sensing probes was transmitted through the POFs and then intensified by the image intensifier because the scintillation signal normally has a very low light intensity. Real-time scintillation images (RSIs) containing the intensified scintillation signals were taken by the CMOS image sensor with a single lens optical system and displayed through a software program. Under variation of the exposure parameters, we measured RSIs containing dose information using the multichannel all-in-one phantom dosimeter and compared the results with the absorbed doses obtained by using a semiconductor dosimeter (SCD). From the experimental results of this study, the light intensities of nine regions of interest (ROI) in the RSI measured by the phantom dosimeter were similar to the dose distribution obtained using the SCD. In conclusion, we demonstrated that the planar dose distribution including the entrance surface dose (ESD) can be easily measured by using the proposed phantom dosimeter system.
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spelling pubmed-47012912016-01-19 Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam Jeon, Hyesu Yoo, Wook Jae Shin, Sang Hun Kwon, Guwon Kim, Mingeon Kim, Hye Jin Song, Young Beom Jang, Kyoung Won Youn, Won Sik Lee, Bongsoo Sensors (Basel) Article We developed a multichannel all-in-one phantom dosimeter system composed of nine sensing probes, a chest phantom, an image intensifier, and a complementary metal-oxide semiconductor (CMOS) image sensor to measure the dose distribution of an X-ray beam used in radiation diagnosis. Nine sensing probes of the phantom dosimeter were fabricated identically by connecting a plastic scintillating fiber (PSF) to a plastic optical fiber (POF). To measure the planar dose distribution on a chest phantom according to exposure parameters used in clinical practice, we divided the top of the chest phantom into nine equal parts virtually and then installed the nine sensing probes at each center of the nine equal parts on the top of the chest phantom as measuring points. Each scintillation signal generated in the nine sensing probes was transmitted through the POFs and then intensified by the image intensifier because the scintillation signal normally has a very low light intensity. Real-time scintillation images (RSIs) containing the intensified scintillation signals were taken by the CMOS image sensor with a single lens optical system and displayed through a software program. Under variation of the exposure parameters, we measured RSIs containing dose information using the multichannel all-in-one phantom dosimeter and compared the results with the absorbed doses obtained by using a semiconductor dosimeter (SCD). From the experimental results of this study, the light intensities of nine regions of interest (ROI) in the RSI measured by the phantom dosimeter were similar to the dose distribution obtained using the SCD. In conclusion, we demonstrated that the planar dose distribution including the entrance surface dose (ESD) can be easily measured by using the proposed phantom dosimeter system. MDPI 2015-11-11 /pmc/articles/PMC4701291/ /pubmed/26569252 http://dx.doi.org/10.3390/s151128490 Text en © 2015 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/4.0/).
spellingShingle Article
Jeon, Hyesu
Yoo, Wook Jae
Shin, Sang Hun
Kwon, Guwon
Kim, Mingeon
Kim, Hye Jin
Song, Young Beom
Jang, Kyoung Won
Youn, Won Sik
Lee, Bongsoo
Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam
title Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam
title_full Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam
title_fullStr Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam
title_full_unstemmed Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam
title_short Performance Evaluation of a Multichannel All-In-One Phantom Dosimeter for Dose Measurement of Diagnostic X-ray Beam
title_sort performance evaluation of a multichannel all-in-one phantom dosimeter for dose measurement of diagnostic x-ray beam
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4701291/
https://www.ncbi.nlm.nih.gov/pubmed/26569252
http://dx.doi.org/10.3390/s151128490
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