Development, construction, and evaluation of an alternative dosimetry phantom for computed tomography

This article aims to present the development, construction, and evaluation of an alternative computed tomography dose index (CTDI) phantom. Epoxy resin was mixed with an iodine-based contrast agent to produce radiological characteristics resembling polymethyl methacrylate (PMMA) as a standard CTDI p...

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Published in:Journal of Medical Physics
Main Authors: Lukmanda Evan Lubis, Windi Dliya Najmah, Yuni Muliyanti, Ika Hariyati, Dea Ryangga, Terry Mart, Hilde Bosmans, Djarwani Soeharso Soejoko
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2023-01-01
Subjects:
Online Access:http://www.jmp.org.in/article.asp?issn=0971-6203;year=2023;volume=48;issue=4;spage=402;epage=408;aulast=Lubis
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author Lukmanda Evan Lubis
Windi Dliya Najmah
Yuni Muliyanti
Ika Hariyati
Dea Ryangga
Terry Mart
Hilde Bosmans
Djarwani Soeharso Soejoko
author_facet Lukmanda Evan Lubis
Windi Dliya Najmah
Yuni Muliyanti
Ika Hariyati
Dea Ryangga
Terry Mart
Hilde Bosmans
Djarwani Soeharso Soejoko
author_sort Lukmanda Evan Lubis
collection DOAJ
container_title Journal of Medical Physics
description This article aims to present the development, construction, and evaluation of an alternative computed tomography dose index (CTDI) phantom. Epoxy resin was mixed with an iodine-based contrast agent to produce radiological characteristics resembling polymethyl methacrylate (PMMA) as a standard CTDI phantom. As a preliminary study, testing was carried out using computed tomography images (80 and 120 kVp) on 12 variations of epoxy-iodine resin mixtures to obtain relative electron density (ρe) values and effective atomic numbers (Zeff) of the samples. The alternative CTDI phantoms were then constructed with a resin-iodine mixture using iodine concentrations that yield on closest ρe and Zeff values to those of PMMA. The evaluation was carried out by comparing dose measurement results at various energies between the alternative phantom and the International Electrotechnical Commission-standard CTDI phantom. At a concentration of 0.46%, the epoxy resin has ρe and Zeff with a deviation against PMMA of 0.12% and 1.58%, respectively, so that composition was chosen for the alternative CTDI phantom construction. The average dose discrepancy values were 5% and 1%, respectively, for the head and body phantoms in the tested tube voltages of 80 kVp, 100 kVp, 120 kVp, and 135 kVp. The Student's t-test result between the alternative and the standard phantoms also showed P < 0.05, indicating the comparability of the alternative CTDI phantom with the standard CTDI phantom.
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spelling doaj-art-b5ab99fdd0174dda97397c3bb3d2bc2a2025-08-20T00:00:36ZengWolters Kluwer Medknow PublicationsJournal of Medical Physics0971-62031998-39132023-01-0148440240810.4103/jmp.jmp_92_23Development, construction, and evaluation of an alternative dosimetry phantom for computed tomographyLukmanda Evan LubisWindi Dliya NajmahYuni MuliyantiIka HariyatiDea RyanggaTerry MartHilde BosmansDjarwani Soeharso SoejokoThis article aims to present the development, construction, and evaluation of an alternative computed tomography dose index (CTDI) phantom. Epoxy resin was mixed with an iodine-based contrast agent to produce radiological characteristics resembling polymethyl methacrylate (PMMA) as a standard CTDI phantom. As a preliminary study, testing was carried out using computed tomography images (80 and 120 kVp) on 12 variations of epoxy-iodine resin mixtures to obtain relative electron density (ρe) values and effective atomic numbers (Zeff) of the samples. The alternative CTDI phantoms were then constructed with a resin-iodine mixture using iodine concentrations that yield on closest ρe and Zeff values to those of PMMA. The evaluation was carried out by comparing dose measurement results at various energies between the alternative phantom and the International Electrotechnical Commission-standard CTDI phantom. At a concentration of 0.46%, the epoxy resin has ρe and Zeff with a deviation against PMMA of 0.12% and 1.58%, respectively, so that composition was chosen for the alternative CTDI phantom construction. The average dose discrepancy values were 5% and 1%, respectively, for the head and body phantoms in the tested tube voltages of 80 kVp, 100 kVp, 120 kVp, and 135 kVp. The Student's t-test result between the alternative and the standard phantoms also showed P < 0.05, indicating the comparability of the alternative CTDI phantom with the standard CTDI phantom.http://www.jmp.org.in/article.asp?issn=0971-6203;year=2023;volume=48;issue=4;spage=402;epage=408;aulast=Lubisalternative phantomcomputed tomography dose indexcomputed tomographydose
spellingShingle Lukmanda Evan Lubis
Windi Dliya Najmah
Yuni Muliyanti
Ika Hariyati
Dea Ryangga
Terry Mart
Hilde Bosmans
Djarwani Soeharso Soejoko
Development, construction, and evaluation of an alternative dosimetry phantom for computed tomography
alternative phantom
computed tomography dose index
computed tomography
dose
title Development, construction, and evaluation of an alternative dosimetry phantom for computed tomography
title_full Development, construction, and evaluation of an alternative dosimetry phantom for computed tomography
title_fullStr Development, construction, and evaluation of an alternative dosimetry phantom for computed tomography
title_full_unstemmed Development, construction, and evaluation of an alternative dosimetry phantom for computed tomography
title_short Development, construction, and evaluation of an alternative dosimetry phantom for computed tomography
title_sort development construction and evaluation of an alternative dosimetry phantom for computed tomography
topic alternative phantom
computed tomography dose index
computed tomography
dose
url http://www.jmp.org.in/article.asp?issn=0971-6203;year=2023;volume=48;issue=4;spage=402;epage=408;aulast=Lubis
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