Validation of a paediatric thyroid phantom using different multidetector computed tomography models

The aim of this study was to compare the attenuation values of a fabricated paediatric thyroid phantom material using different MDCT models. A paediatric thyroid phantom was designed to mimic the shape and size of a paediatric patient with an age of 9 years using high-density Polyethylene as the pha...

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Main Authors: Alssabbagh, Moayyad, Ng, L. Y., Tajuddin, A. A., Abdul Manap, Mahayuddin, Zainon, Rafidah
Format: Article
Language:English
Published: IOP Publishing 2016
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Online Access:http://eprints.usm.my/37510/1/Alsabbagh_2016_J._Phys.%253A_Conf._Ser._694_012047.pdf
http://eprints.usm.my/37510/
https://doi.org/10.1088/1742-6596/694/1/012047
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spelling my.usm.eprints.37510 http://eprints.usm.my/37510/ Validation of a paediatric thyroid phantom using different multidetector computed tomography models Alssabbagh, Moayyad Ng, L. Y. Tajuddin, A. A. Abdul Manap, Mahayuddin Zainon, Rafidah QC1-999 Physics RA440-440.87 Study and teaching. Research The aim of this study was to compare the attenuation values of a fabricated paediatric thyroid phantom material using different MDCT models. A paediatric thyroid phantom was designed to mimic the shape and size of a paediatric patient with an age of 9 years using high-density Polyethylene as the phantom material. The fabricated phantom was scanned using two different multidetector CT scanners (16- and 128-row detectors). The CT numbers were evaluated and the mass attenuation coefficients () of the phantom material were obtained at each applied energy from each scanner. The results were compared with the tables of the National Institute of Standards and Technology (NIST). The CTs of 16- and 128-row detectors showed that the obtained attenuation values are very similar to the NIST’s values. However, the CT of the 128-row detectors showed a slightly much closer match to the NIST’s values. This refers to the type and quality of the electronic connections between the detectors. Furthermore, the type and number of detectors (16- and 128-detectors) could affect the details and quality of the output images. The results show that different multidetector CTs can be used to validate the phantom and determine the mass attenuation coefficients of its material. IOP Publishing 2016 Article PeerReviewed application/pdf en cc_by http://eprints.usm.my/37510/1/Alsabbagh_2016_J._Phys.%253A_Conf._Ser._694_012047.pdf Alssabbagh, Moayyad and Ng, L. Y. and Tajuddin, A. A. and Abdul Manap, Mahayuddin and Zainon, Rafidah (2016) Validation of a paediatric thyroid phantom using different multidetector computed tomography models. Journal of Physics: Conference Series, 694 (1). pp. 1-5. ISSN 1742-6588 https://doi.org/10.1088/1742-6596/694/1/012047
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 QC1-999 Physics
RA440-440.87 Study and teaching. Research
spellingShingle QC1-999 Physics
RA440-440.87 Study and teaching. Research
Alssabbagh, Moayyad
Ng, L. Y.
Tajuddin, A. A.
Abdul Manap, Mahayuddin
Zainon, Rafidah
Validation of a paediatric thyroid phantom using different multidetector computed tomography models
description The aim of this study was to compare the attenuation values of a fabricated paediatric thyroid phantom material using different MDCT models. A paediatric thyroid phantom was designed to mimic the shape and size of a paediatric patient with an age of 9 years using high-density Polyethylene as the phantom material. The fabricated phantom was scanned using two different multidetector CT scanners (16- and 128-row detectors). The CT numbers were evaluated and the mass attenuation coefficients () of the phantom material were obtained at each applied energy from each scanner. The results were compared with the tables of the National Institute of Standards and Technology (NIST). The CTs of 16- and 128-row detectors showed that the obtained attenuation values are very similar to the NIST’s values. However, the CT of the 128-row detectors showed a slightly much closer match to the NIST’s values. This refers to the type and quality of the electronic connections between the detectors. Furthermore, the type and number of detectors (16- and 128-detectors) could affect the details and quality of the output images. The results show that different multidetector CTs can be used to validate the phantom and determine the mass attenuation coefficients of its material.
format Article
author Alssabbagh, Moayyad
Ng, L. Y.
Tajuddin, A. A.
Abdul Manap, Mahayuddin
Zainon, Rafidah
author_facet Alssabbagh, Moayyad
Ng, L. Y.
Tajuddin, A. A.
Abdul Manap, Mahayuddin
Zainon, Rafidah
author_sort Alssabbagh, Moayyad
title Validation of a paediatric thyroid phantom using different multidetector computed tomography models
title_short Validation of a paediatric thyroid phantom using different multidetector computed tomography models
title_full Validation of a paediatric thyroid phantom using different multidetector computed tomography models
title_fullStr Validation of a paediatric thyroid phantom using different multidetector computed tomography models
title_full_unstemmed Validation of a paediatric thyroid phantom using different multidetector computed tomography models
title_sort validation of a paediatric thyroid phantom using different multidetector computed tomography models
publisher IOP Publishing
publishDate 2016
url http://eprints.usm.my/37510/1/Alsabbagh_2016_J._Phys.%253A_Conf._Ser._694_012047.pdf
http://eprints.usm.my/37510/
https://doi.org/10.1088/1742-6596/694/1/012047
_version_ 1643709090021507072
score 13.160551