Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantom

In the present study, the last stable version of Monte Carlo Geant4 code known as Geant4.10.3 has been used for measuring internal dose ratios to the whole body for about 40 organs. This, by performing a Monte Carlo model of 18F-fluorodeoxyglucose (18F-FDG) inside different organs of medical interna...

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Main Authors: Jaafar EL Bakkali, A Doudouh, A Biyi, K Bouyakhlef, O Ait Sahel, Y Benameur
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2020-01-01
Series:World Journal of Nuclear Medicine
Subjects:
Online Access:http://www.wjnm.org/article.asp?issn=1450-1147;year=2020;volume=19;issue=4;spage=382;epage=397;aulast=Bakkali
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spelling doaj-3de1bf70aaa84a25941915758b7655f92021-01-08T05:12:11ZengWolters Kluwer Medknow PublicationsWorld Journal of Nuclear Medicine1450-11471607-33122020-01-0119438239710.4103/wjnm.WJNM_58_19Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantomJaafar EL BakkaliA DoudouhA BiyiK BouyakhlefO Ait SahelY BenameurIn the present study, the last stable version of Monte Carlo Geant4 code known as Geant4.10.3 has been used for measuring internal dose ratios to the whole body for about 40 organs. This, by performing a Monte Carlo model of 18F-fluorodeoxyglucose (18F-FDG) inside different organs of medical internal radiation dose male phantom, mimics a human male adult of 70 kg. A dedicated Geant4 user code has been developed in the top of one offered by Geant4 Monte Carlo toolkit and so-called human phantom. Several Monte Carlo simulations have been carried out, and in each of them, we have taken up such organ as source of 18F-FDG with a small amount of radioactivity, evenly distributed across its volume, and we measure ratios of absorbed doses deposited in organs to the whole body. The results have shown that there are radiation dose contributions from surrounding organs and their gravities are so variable; some organs have near-local character; thus, almost all radiations are locally deposited, which generally do not affect surrounding ones mainly including adrenals, thyroid, clavicles, thymus, testes, bladder, pancreas, scapula and upper spine; whereas, it is not the case for many other organs in which radiation doses are deposited outside of their parent volumes. In addition, absorbed doses in some organs that have high-tissue weighting factors, namely colon, lungs, stomach, bladder, thyroid, and liver are seriously affected by radioactivity of surrounding muscle organs, the gravity of such affectation is mainly growth when a patient is identified as having hyperglycemia or undergoing a hard physical activity.http://www.wjnm.org/article.asp?issn=1450-1147;year=2020;volume=19;issue=4;spage=382;epage=397;aulast=Bakkaligeant4internal dosimetrymedical internal radiation dose phantommonte carlo
collection DOAJ
language English
format Article
sources DOAJ
author Jaafar EL Bakkali
A Doudouh
A Biyi
K Bouyakhlef
O Ait Sahel
Y Benameur
spellingShingle Jaafar EL Bakkali
A Doudouh
A Biyi
K Bouyakhlef
O Ait Sahel
Y Benameur
Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantom
World Journal of Nuclear Medicine
geant4
internal dosimetry
medical internal radiation dose phantom
monte carlo
author_facet Jaafar EL Bakkali
A Doudouh
A Biyi
K Bouyakhlef
O Ait Sahel
Y Benameur
author_sort Jaafar EL Bakkali
title Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantom
title_short Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantom
title_full Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantom
title_fullStr Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantom
title_full_unstemmed Ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18F-fluorodeoxyglucose, a Monte Carlo Geant4 study on a male medical internal radiation dose phantom
title_sort ratios of internal doses deposited in different organs to the whole body when such organ is adopted as source of 18f-fluorodeoxyglucose, a monte carlo geant4 study on a male medical internal radiation dose phantom
publisher Wolters Kluwer Medknow Publications
series World Journal of Nuclear Medicine
issn 1450-1147
1607-3312
publishDate 2020-01-01
description In the present study, the last stable version of Monte Carlo Geant4 code known as Geant4.10.3 has been used for measuring internal dose ratios to the whole body for about 40 organs. This, by performing a Monte Carlo model of 18F-fluorodeoxyglucose (18F-FDG) inside different organs of medical internal radiation dose male phantom, mimics a human male adult of 70 kg. A dedicated Geant4 user code has been developed in the top of one offered by Geant4 Monte Carlo toolkit and so-called human phantom. Several Monte Carlo simulations have been carried out, and in each of them, we have taken up such organ as source of 18F-FDG with a small amount of radioactivity, evenly distributed across its volume, and we measure ratios of absorbed doses deposited in organs to the whole body. The results have shown that there are radiation dose contributions from surrounding organs and their gravities are so variable; some organs have near-local character; thus, almost all radiations are locally deposited, which generally do not affect surrounding ones mainly including adrenals, thyroid, clavicles, thymus, testes, bladder, pancreas, scapula and upper spine; whereas, it is not the case for many other organs in which radiation doses are deposited outside of their parent volumes. In addition, absorbed doses in some organs that have high-tissue weighting factors, namely colon, lungs, stomach, bladder, thyroid, and liver are seriously affected by radioactivity of surrounding muscle organs, the gravity of such affectation is mainly growth when a patient is identified as having hyperglycemia or undergoing a hard physical activity.
topic geant4
internal dosimetry
medical internal radiation dose phantom
monte carlo
url http://www.wjnm.org/article.asp?issn=1450-1147;year=2020;volume=19;issue=4;spage=382;epage=397;aulast=Bakkali
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