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Development of a patient-specific 3D dose evaluation program for QA in radiation therapy

Authors
Lee, SukChang, Kyung HwanCao, Yuan JieShim, Jang BoYang, Dae SikPark, Young JeYoon, Won SupKim, Chul Yong
Issue Date
Mar-2015
Publisher
KOREAN PHYSICAL SOC
Keywords
3D dose evaluation program; Gel dosimeter; Optical CT scanner; (DRESS)-D-P; Radiotherapy
Citation
JOURNAL OF THE KOREAN PHYSICAL SOCIETY, v.66, no.6, pp.859 - 866
Indexed
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF THE KOREAN PHYSICAL SOCIETY
Volume
66
Number
6
Start Page
859
End Page
866
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/94215
DOI
10.3938/jkps.66.859
ISSN
0374-4884
Abstract
We present preliminary results for a 3-dimensional dose evaluation software system ( (P) DRESS, patient-specific 3-dimensional dose real evaluation system). Scanned computed tomography (CT) images obtained by using dosimetry were transferred to the radiation treatment planning system (ECLIPSE, VARIAN, Palo Alto, CA) where the intensity modulated radiation therapy (IMRT) nasopharynx plan was designed. We used a 10 MV photon beam (CLiX, VARIAN, Palo Alto, CA) to deliver the nasopharynx treatment plan. After irradiation, the TENOMAG dosimeter was scanned using a VISTA (TM) scanner. The scanned data were reconstructed using VistaRecon software to obtain a 3D dose distribution of the optical density. An optical-CT scanner was used to readout the dose distribution in the gel dosimeter. Moreover, we developed the (P) DRESS by using Flatform, which were developed by our group, to display the 3D dose distribution by loading the DICOM RT data which are exported from the radiotherapy treatment plan (RTP) and the optical-CT reconstructed VFF file, into the independent (P) DRESS with an ioniz ation chamber and EBT film was used to compare the dose distribution calculated from the RTP with that measured by using a gel dosimeter. The agreement between the normalized EBT, the gel dosimeter and RTP data was evaluated using both qualitative and quantitative methods, such as the isodose distribution, dose difference, point value, and profile. The profiles showed good agreement between the RTP data and the gel dosimeter data, and the precision of the dose distribution was within +/- 3%. The results from this study showed significantly discrepancies between the dose distribution calculated from the treatment plan and the dose distribution measured by a TENOMAG gel and by scanning with an optical CT scanner. The 3D dose evaluation software system ( (P) DRESS, patient specific dose real evaluation system), which were developed in this study evaluates the accuracies of the three-dimensional dose distributions. Further applications of the system utility are expected to result from future studies.
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College of Medicine (Department of Medical Science)
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