DocumentCode
1766424
Title
A Head and Neck Simulator for Radiology and Radiotherapy
Author
Thompson, Lachlan ; Campos, T.P.R.
Author_Institution
DEN Nucl. Eng. Dept., UFMG Fed. Univ. of Minas Gerais, Belo Horizonte, Brazil
Volume
60
Issue
3
fYear
2013
fDate
41426
Firstpage
1503
Lastpage
1511
Abstract
Phantoms are suitable tools to simulate body tissues and organs in radiology and radiation therapy. This study presents the development of a physical head and neck phantom and its radiological response for simulating brain pathology. The following features on the phantom are addressed and compared to human data: mass density, chemical composition, anatomical shape, computerized tomography images and Hounsfield Units. Mass attenuation and kerma coefficients of the synthetic phantom and normal tissues, as well as their deviations, were also investigated. Radiological experiments were performed, including brain tumors and subarachnoid hemorrhage simulations. Computerized tomography images of such pathologies in phantom and human were obtained. The anthropometric dimensions of the phantom present anatomical conformation similar to a human head and neck. Elemental weight percentages of the equivalent tissues match the human ones. Hounsfield Unit values of the main developed structures are presented, approaching human data. Kerma and mass attenuation coefficients spectra from human and phantom are presented, demonstrating smaller deviations in the radiological X-ray spectral domain. In conclusion, the phantom presented suitable normal and pathological radiological responses relative to those observed in humans. It may improve radiological protocols and education in medical imaging.
Keywords
anthropometry; brain; computerised tomography; diagnostic radiography; dosimetry; phantoms; radiation therapy; radiology; tumours; Hounsfield units; anatomical conformation; anthropometric dimensions; biological organs; body tissues; brain pathology; brain tumors; chemical composition; computerized tomography images; head simulator; kerma coefficients; mass attenuation; mass density; medical imaging; neck phantom; neck simulator; pathological radiological responses; physical head; radiological X-ray spectral; radiology; radiotherapy; subarachnoid hemorrhage simulations; Chemical elements; Computed tomography; Head; Materials; Muscles; Neck; Phantoms; Anthropometric and anthropomorphic phantom; equivalent tissue; head and neck simulator; radiological response;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2013.2247063
Filename
6484213
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