Du Weiliang, Yang James
Department of Radiation Physics, University of Texas M D Anderson Cancer Center, 1515 Holcombe Blvd, Unit 94, Houston, TX 77030, USA.
Phys Med Biol. 2009 Feb 7;54(3):555-67. doi: 10.1088/0031-9155/54/3/006. Epub 2009 Jan 6.
Uncertainty in localizing the radiation field center is among the major components that contribute to the overall positional error and thus must be minimized. In this study, we developed a Hough transform (HT)-based computer algorithm to localize the radiation center of a circular or rectangular field with subpixel accuracy. We found that the HT method detected the centers of the test circular fields with an absolute error of 0.037 +/- 0.019 pixels. On a typical electronic portal imager with 0.5 mm image resolution, this mean detection error was translated to 0.02 mm, which was much finer than the image resolution. It is worth noting that the subpixel accuracy described here does not include experimental uncertainties such as linac mechanical instability or room laser inaccuracy. The HT method was more accurate and more robust to image noise and artifacts than the traditional center-of-mass method. Application of the HT method in Winston-Lutz tests was demonstrated to measure the ball-radiation center alignment with subpixel accuracy. Finally, the method was applied to quantitative evaluation of the radiation center wobble during collimator rotation.
确定辐射野中心的不确定性是导致整体位置误差的主要因素之一,因此必须将其降至最低。在本研究中,我们开发了一种基于霍夫变换(HT)的计算机算法,以亚像素精度确定圆形或矩形野的辐射中心。我们发现,HT方法检测测试圆形野中心的绝对误差为0.037±0.019像素。在具有0.5毫米图像分辨率的典型电子射野影像器上,该平均检测误差转化为0.02毫米,这比图像分辨率精细得多。值得注意的是,这里描述的亚像素精度不包括诸如直线加速器机械不稳定性或室内激光不准确等实验不确定性。HT方法比传统的质心方法对图像噪声和伪影更准确、更稳健。HT方法在温斯顿-卢茨测试中的应用被证明能够以亚像素精度测量球与辐射中心的对准情况。最后,该方法被应用于准直器旋转过程中辐射中心摆动的定量评估。