Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/77431
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Type: Journal article
Title: Modification of the gamma function for the recognition of over- and under-dose regions in three dimensions
Author: Mohammadi, M.
Rostampour, N.
Rutten, T.
Citation: Journal of Medical Physics, 2012; 37(4):200-206
Publisher: Medknow
Issue Date: 2012
ISSN: 0971-6203
1998-3913
Statement of
Responsibility: 
Mohammad Mohammadi, Nima Rostampour, Thomas P Rutten
Abstract: In order to evaluate two-dimensional radiation dose distributions, an algorithm called the Gamma function has recently been modified. The current study concentrates on modification of the gamma function as a three-dimensional dose distribution evaluation tool, and includes the recognition of over-dose/under-dose areas. Using a sign term, the conventional gamma function separates the disagreed areas into two parts: over-dose and under-dose areas. The new gamma function was modified using an extension of the dose difference criterion, ΔD, from two dimensions into three dimensions. In order to provide two-dimensional dose maps for analysis, several images were acquired for a range of regular and irregular radiation fields using a Scanning Liquid Ionization Chamber Electronic Portal Imaging Device. The raw images were then converted into two-dimensional transmitted dose maps using an empirical method. They were utilized as reference dose maps. Translational and rotational manipulations were performed on the reference dose distribution maps to provide evaluated dose maps. The reference and evaluated dose maps were then compared using conventional and modified gamma tools. The results indicated that the modified algorithm is able to enhance the over- and under-dose regions. In addition, a slight increase of the agreement percentage for reference and evaluated dose maps were observed by the extension of ΔD to three dimensions. It is concluded that the modified method is more realistic and applicable for the evaluation of both two-dimensional and three-dimensional dose distributions.
Keywords: Dose distribution, gamma function, two-dimensional dose distribution, two-dimensional dosimetry
Rights: © 2006 - 2013 Journal of Medical Physics
DOI: 10.4103/0971-6203.103605
Published version: http://dx.doi.org/10.4103/0971-6203.103605
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