DocumentCode
15712
Title
Matched Fields Technique for
Low-Dose Rate Source for Keloid Treatments
Author
Sampaio, F.G.A. ; Petchevist, P.C.D. ; Del Lama, L.S. ; de Almeida, A.
Author_Institution
Fac. de Filosofia, Cienc. e Letras de Ribeirao Preto (FFCLRP-USP), Ribeirao, Brazil
Volume
60
Issue
2
fYear
2013
fDate
Apr-13
Firstpage
837
Lastpage
842
Abstract
90Sr/90Y low-dose rate sources are commonly used in pterygium, keloid, and skin postsurgery treatments to avoid reincidence. The beta radioactive materials are deposited on metal plates, in geometries, such as square, rectangular, and circular, to treat lesions up to 2 mm depth from the skin surface. Although it has a limitation for deeper lesion treatments, beta application presents an advantage of minor healthy tissue damage. The chemical dosimeter Fricke Xylenol Gel (FXG), which presents high spatial resolution and effective atomic number (Zeff) similar to the soft tissue, can determine the depth dose distribution generated under a source and simultaneously simulate the soft tissue. In this paper, the FXG was used to evaluate the depth dose distributions, along two adjacent square 90Sr/90Y sources, to verify the radiation homogeneity at the interface region. From the results, one could infer a subdose region under the interface area, when the metal plates are matched (ordinary procedure for treatments using adjacent metal plates). Absorbed dose percentages of 53% and 32% were found at the surface and at 1 mm depth, respectively, which are lower than those expected for the interface region. In this sense, the results suggest that the radioactive areas must be adjacent instead of the physical ones, which means that the metal plates should be overlapped by 5 mm, approximately.
Keywords
dosimetry; radiation therapy; skin; surgery; 90Sr low-dose rate source; 90Sr source; 90Y low-dose rate source; 90Y source; beta application; beta radioactive materials; chemical dosimeter Fricke Xylenol Gel; deep lesion treatments; depth dose distribution; effective atomic number; high-spatial resolution; interface area; interface region; keloid treatments; matched fields technique; metal plates; minor healthy tissue damage; pterygium treatments; radiation homogeneity; radioactive areas; size 1 mm; size 2 mm; skin postsurgery treatments; skin surface; soft tissue; subdose region; Dosimetry; Metals; Optical variables measurement; Radiation effects; Skin; Surface treatment; Uncertainty; Brachytherapy; Fricke Xylenol Gel (FXG); matched fields; overdose;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2013.2251424
Filename
6496309
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