Cai Bin, Goddu S Murty, Yaddanapudi Sridhar, Caruthers Douglas, Wen Jie, Noel Camille, Mutic Sasa, Sun Baozhou
Department of Radiation Oncology, Washington University, St. Louis, MO, USA.
Department of Radiation Oncology, University of Iowa Hospitals and Clinics, Iowa City, IA, USA.
J Appl Clin Med Phys. 2018 Jan;19(1):73-85. doi: 10.1002/acm2.12222. Epub 2017 Nov 10.
Normalize the response of electronic portal imaging device (EPID) is the first step toward an EPID-based standardization of Linear Accelerator (linac) dosimetry quality assurance. In this study, we described an approach to generate two-dimensional (2D) pixel sensitivity maps (PSM) for EPIDs response normalization utilizing an alternative beam and dark-field (ABDF) image acquisition technique and large overlapping field irradiations. The automated image acquisition was performed by XML-controlled machine operation and the PSM was generated based on a recursive calculation algorithm for Varian linacs equipped with aS1000 and aS1200 imager panels. Cross-comparisons of normalized beam profiles and 1.5%/1.5 mm 1D Gamma analysis was adopted to quantify the improvement of beam profile matching before and after PSM corrections. PSMs were derived for both photon (6, 10, 15 MV) and electron (6, 20 MeV) beams via proposed method. The PSM-corrected images reproduced a horn-shaped profile for photon beams and a relative uniform profiles for electrons. For dosimetrically matched linacs equipped with aS1000 panels, PSM-corrected images showed increased 1D-Gamma passing rates for all energies, with an average 10.5% improvement for crossline and 37% for inline beam profiles. Similar improvements in the phantom study were observed with a maximum improvement of 32% for 15 MV and 22% for 20 MeV. The PSM value showed no significant change for all energies over a 3-month period. In conclusion, the proposed approach correct EPID response for both aS1000 and aS1200 panels. This strategy enables the possibility to standardize linac dosimetry QA and to benchmark linac performance utilizing EPID as the common detector.
对电子射野影像装置(EPID)的响应进行归一化处理是实现基于EPID的直线加速器(linac)剂量学质量保证标准化的第一步。在本研究中,我们描述了一种利用替代束和暗场(ABDF)图像采集技术以及大重叠野照射来生成用于EPID响应归一化的二维(2D)像素灵敏度图(PSM)的方法。自动图像采集通过XML控制的机器操作进行,并且基于配备aS1000和aS1200成像面板的Varian直线加速器的递归计算算法生成PSM。采用归一化射野轮廓的交叉比较和1.5%/1.5 mm一维伽马分析来量化PSM校正前后射野轮廓匹配的改善情况。通过所提出的方法为光子束(6、10、15 MV)和电子束(6、20 MeV)导出了PSM。经PSM校正的图像对于光子束再现了喇叭形轮廓,对于电子束再现了相对均匀的轮廓。对于配备aS1000面板且剂量学匹配的直线加速器,经PSM校正的图像在所有能量下均显示出一维伽马通过率增加,交叉线射野轮廓平均提高10.5%, inline射野轮廓平均提高37%。在模体研究中观察到了类似的改善,15 MV时最大改善为32%,20 MeV时最大改善为22%。在3个月的时间内所有能量下PSM值均未显示出显著变化。总之,所提出的方法校正了aS1000和aS1200面板的EPID响应。这种策略使得能够实现直线加速器剂量学质量保证的标准化,并以EPID作为通用探测器来对直线加速器性能进行基准测试。