首页> 外文期刊>Iranian journal of radiation research : >A quality assurance program for an amorphous silicon electronic portal imaging device using in-house developed phantoms: a method development for dosimetry purposes
【24h】

A quality assurance program for an amorphous silicon electronic portal imaging device using in-house developed phantoms: a method development for dosimetry purposes

机译:使用内部开发的体模的非晶硅电子门禁成像设备的质量保证程序:用于剂量学目的的方法开发

获取原文
获取原文并翻译 | 示例
           

摘要

Background: Electronic portal imaging devices (EPIDs) play an important role in radiation therapy portal imaging, geometric and dosimetric verifications. A successful utilization of EPIDs for imaging and dosimetric purposes requires a reliable quality control process routine to be carried out regularly. In this study, two in-house phantoms were developed and analyzed for implementation in a quality assurance program for dosimetry purposes. Materials and Methods: An amorphous silicon (a-Si) imager (OptiVue500) was used. A low contrast resolution phantom and an image quality phantom were constructed and implemented. Low contrast resolution of the EPID was evaluated by counting the number of holes detectable in the image of phantom using human observers and a software. The image quality phantom was used for modulation transfer function, contrast to noise ratio and noise level evaluations. This phantom contains five sets of high-contrast rectangular bar patterns of variable spatial frequencies and six uniform regions. Results: Although the manual low contrast resolution method was observer-dependent and insensitive to artifacts, the automatic method was robust and fully objective but sensitive to artifacts. The critical frequency values for 6 and 18 MV were 0.3558±0.006 Ip/mm and 0.2707±0.006 Ip/mm respectively. The contrast-to-noise ratio was found to be ~ 240% higher for 6 MV compared to 18 MV. Conclusion: The developed phantoms provide a convenient process for periodic performance of an EPID. These phantoms are independent of the EPID system and provide robust tools for continuous monitoring of image quality parameters as well as dosimetric parameters.
机译:背景:电子门禁成像设备(EPID)在放射治疗门禁成像,几何和剂量学验证中起着重要作用。成功地将EPID用于成像和剂量测定需要定期执行可靠的质量控制过程例程。在这项研究中,开发了两个内部模型,并对其进行了分析,以用于剂量测定目的的质量保证程序。材料和方法:使用非晶硅(a-Si)成像仪(OptiVue500)。构造并实现了低对比度分辨率的幻像和图像质量的幻像。 EPID的低对比度分辨率是通过使用人类观察者和软件对幻影图像中可检测到的孔进行计数来评估的。图像质量体模用于调制传递函数,对比噪声比和噪声水平评估。该幻像包含五组可变空间频率的高对比度矩形条形图案和六个均匀区域。结果:尽管手动的低对比度分辨率方法依赖于观察者并且对伪影不敏感,但是自动方法却健壮且完全客观,但对伪影很敏感。 6和18 MV的临界频率分别为0.3558±0.006 Ip / mm和0.2707±0.006 Ip / mm。发现6 MV的对比噪声比〜18 MV高约240%。结论:开发的模型为EPID的定期执行提供了便利的过程。这些体模独立于EPID系统,并提供了用于连续监视图像质量参数和剂量参数的强大工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号