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使用电子射野影像装置开发一站式射束验证系统用于常规质量保证

Development of a one-stop beam verification system using electronic portal imaging devices for routine quality assurance.

作者信息

Lim Sangwook, Ma Sun Young, Jeung Tae Sig, Yi Byong Yong, Lee Sang Hoon, Lee Suk, Cho Sam Ju, Choi Jinho

机构信息

Department of Radiation Oncology, Kosin University College of Medicine, Seo-gu, Busan, Korea.

出版信息

Med Dosim. 2012 Autumn;37(3):296-304. doi: 10.1016/j.meddos.2011.11.003. Epub 2012 Jan 25.

Abstract

In this study, a computer-based system for routine quality assurance (QA) of a linear accelerator (linac) was developed by using the dosimetric properties of an amorphous silicon electronic portal imaging device (EPID). An acrylic template phantom was designed such that it could be placed on the EPID and be aligned with the light field of the collimator. After irradiation, portal images obtained from the EPID were transferred in DICOM format to a computer and analyzed using a program we developed. The symmetry, flatness, field size, and congruence of the light and radiation fields of the photon beams from the linac were verified simultaneously. To validate the QA system, the ion chamber and film (X-Omat V2; Kodak, New York, NY) measurements were compared with the EPID measurements obtained in this study. The EPID measurements agreed with the film measurements. Parameters for beams with energies of 6 MV and 15 MV were obtained daily for 1 month using this system. It was found that our QA tool using EPID could substitute for the film test, which is a time-consuming method for routine QA assessment.

摘要

在本研究中,利用非晶硅电子射野影像装置(EPID)的剂量学特性,开发了一种用于直线加速器(linac)常规质量保证(QA)的计算机系统。设计了一个丙烯酸模板体模,使其能够放置在EPID上并与准直器的光野对齐。照射后,从EPID获得的射野图像以DICOM格式传输到计算机,并使用我们开发的程序进行分析。同时验证了直线加速器光子束的光野和辐射野的对称性、平坦度、射野大小和一致性。为了验证QA系统,将电离室和胶片(X-Omat V2;柯达公司,纽约州纽约市)测量结果与本研究中获得的EPID测量结果进行了比较。EPID测量结果与胶片测量结果一致。使用该系统,连续1个月每天获取能量为6 MV和15 MV的射束参数。结果发现,我们使用EPID的QA工具可以替代胶片测试,而胶片测试是一种用于常规QA评估的耗时方法。

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