Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose

Recently, there are several commercially available CT phantoms designed for various applications. However, the phantom is limited to certain types of tissueequivalent materials. Therefore, there is a need to fabricate a cost-effective abdominal CT phantom that contains multi tissue-mimicking materia...

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Main Author: Ramli, Zuraida
Format: Thesis
Language:English
Published: 2020
Subjects:
Online Access:http://eprints.usm.my/52125/1/Pages%20from%20Fabrication%20Of%20An%20Abdominal%20Computed%20Tomography%20Phantom%20For%20Evaluation%20Of%20Image%20Quality%20And%20Radiation%20Dose.pdf
http://eprints.usm.my/52125/
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spelling my.usm.eprints.52125 http://eprints.usm.my/52125/ Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose Ramli, Zuraida R5-920 Medicine (General) Recently, there are several commercially available CT phantoms designed for various applications. However, the phantom is limited to certain types of tissueequivalent materials. Therefore, there is a need to fabricate a cost-effective abdominal CT phantom that contains multi tissue-mimicking materials for image quality and radiation dose evaluation simultaneously. A 32.0 cm diameter abdominal CT phantom was fabricated using polymethyl methacrylate with five sets of cylindrical tissuemimicking materials tubes with 6.0 cm diameter and thermoluminescence dosimeters slots that attached together. 2020-11 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/52125/1/Pages%20from%20Fabrication%20Of%20An%20Abdominal%20Computed%20Tomography%20Phantom%20For%20Evaluation%20Of%20Image%20Quality%20And%20Radiation%20Dose.pdf Ramli, Zuraida (2020) Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose. Masters thesis, Universiti Sains Malaysia.
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic R5-920 Medicine (General)
spellingShingle R5-920 Medicine (General)
Ramli, Zuraida
Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose
description Recently, there are several commercially available CT phantoms designed for various applications. However, the phantom is limited to certain types of tissueequivalent materials. Therefore, there is a need to fabricate a cost-effective abdominal CT phantom that contains multi tissue-mimicking materials for image quality and radiation dose evaluation simultaneously. A 32.0 cm diameter abdominal CT phantom was fabricated using polymethyl methacrylate with five sets of cylindrical tissuemimicking materials tubes with 6.0 cm diameter and thermoluminescence dosimeters slots that attached together.
format Thesis
author Ramli, Zuraida
author_facet Ramli, Zuraida
author_sort Ramli, Zuraida
title Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose
title_short Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose
title_full Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose
title_fullStr Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose
title_full_unstemmed Fabrication Of An Abdominal Computed Tomography Phantom For Evaluation Of Image Quality And Radiation Dose
title_sort fabrication of an abdominal computed tomography phantom for evaluation of image quality and radiation dose
publishDate 2020
url http://eprints.usm.my/52125/1/Pages%20from%20Fabrication%20Of%20An%20Abdominal%20Computed%20Tomography%20Phantom%20For%20Evaluation%20Of%20Image%20Quality%20And%20Radiation%20Dose.pdf
http://eprints.usm.my/52125/
_version_ 1729703918995243008
score 13.159267