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[Comparison of dose accuracy between 2D array detectors for pre-treatment IMRT QA].

作者信息

Nakaguchi Yuji, Araki Fujio, Saiga Shunji, Kouno Tomohiro, Maruyama Masato, Kakei Kiyotaka, Nagasue Nozomu, Hashida Masahiro

机构信息

Department of Radiological Technology, Kumamoto University Hospital.

出版信息

Nihon Hoshasen Gijutsu Gakkai Zasshi. 2012;68(4):443-52. doi: 10.6009/jjrt.2012_jsrt_68.4.443.

DOI:10.6009/jjrt.2012_jsrt_68.4.443
PMID:22516596
Abstract

The dosimetric properties between various 2D array detectors were compared and were evaluated with regard to the accuracy in absolute dose and dose distributions for clinical treatment fields. We used to check the dose accuracy: 2D array detectors; MapCHECK (Sun Nuclear), EPID (Varian Medical Systems), EPID-based dosimetry (EPIDose, Sun Nuclear), COMPASS (IBA) and conventional system; EDR2 film (Eastman Kodak), Exradin A-14SL ion chamber (0.016 cc, Standard Imaging). First, we compared the dose linearity, dose rate dependence, and output factor between the 2D array detectors. Next, the accuracy of the absolute dose and dose distributions were evaluated for clinical fields. All detector responses for the dose linear were in agreement within 1%, and the dose rate dependence and output factor agreed within a standard deviation of ±1.2%, except for EPID. This is because EPID is fluence distributions. In all the 2D array detectors, the point dose agreed within 5% with treatment planning system (TPS). Pass rates of each detector for TPS were more than 97% in the gamma analysis (3 mm/3%). EPIDose was in a good agreement with TPS. All 2D array detectors used in this study showed almost the same accuracy for clinical fields. EPIDose has better resolution than other 2D array detectors and thus this is expected for dose distributions with a small field.

摘要

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引用本文的文献

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Development of multi-planar dose verification by use of a flat panel EPID for intensity-modulated radiation therapy.利用平板电子射野影像装置进行多平面剂量验证用于调强放射治疗的研究进展
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