Low D A, Klein E E, Maag D K, Umfleet W E, Purdy J A
Division of Radiation Oncology, Mallinckrodt Institute of Radiology, St Louis, MO 63110, USA.
Int J Radiat Oncol Biol Phys. 1996 Jan 1;34(1):117-23. doi: 10.1016/0360-3016(95)02096-9.
An electronic portal imaging device (EPID) was recently installed on our dual-energy linear accelerator. Commissioning and quality assurance techniques were developed for the EPID.
A commissioning procedure was developed consisting of five parts: (a) physical operation and safety; (b) image acquisition, resolution, and sensitivity calibration; (c) image storage, analysis, and handling; (d) reference image acquisition; and (e) clinical operations.
The physical operation and safety tests relate to the motions of the unit, stability of the unit supports, safety interlocks, and interlock overrides. Imager contrast and spatial resolutions are monitored by imaging a contrast-detail phantom. The imager calibration procedure consists of a no-radiation image to compensate for signal offsets, as well as a "flat-field image." The flat-field image is taken with 5.0 cm of homogeneous phantom material placed at isocenter to provide some photon scatter and to approximate the presence of a patient. Daily quality assurance procedures consists of safety tests and the acquisition and inspection of images of the contrast-detail phantom. After 1 year, the frequency of the daily procedure was reduced to weekly. Quarterly QA procedures are conducted by the physicist and consist of the same procedures conducted in the weekly test. The annual QA procedure consists of a duplication of the commissioning procedure.
The procedures discussed in this article were applied to an ionization-chamber device. They have been useful in identifying difficulties with the EPID operation, including the need for recalibrating and monitoring the accelerator output stability.
最近在我们的双能直线加速器上安装了一台电子射野影像装置(EPID)。为该EPID开发了调试和质量保证技术。
制定了一个调试程序,包括五个部分:(a)物理操作与安全;(b)图像采集、分辨率和灵敏度校准;(c)图像存储、分析和处理;(d)参考图像采集;以及(e)临床操作。
物理操作和安全测试涉及设备的运动、设备支撑的稳定性、安全联锁和联锁超驰。通过对对比度细节模体成像来监测成像器的对比度和空间分辨率。成像器校准程序包括用于补偿信号偏移的无辐射图像以及“平野图像”。平野图像是在等中心放置5.0 cm均匀模体材料拍摄的,以提供一些光子散射并近似模拟患者的存在。日常质量保证程序包括安全测试以及对比度细节模体图像的采集和检查。1年后,日常程序的频率降至每周一次。季度质量保证程序由物理学家进行,包括与每周测试相同的程序。年度质量保证程序包括重复调试程序。
本文讨论的程序应用于电离室装置。它们有助于识别EPID操作中的困难,包括重新校准和监测加速器输出稳定性的必要性。