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Development and implementation of an EPID‐based method for localizing isocenter

机译:基于EPID的等中心线定位方法的开发和实现

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The aim of this study was to develop a phantom and analysis software that could be used to quickly and accurately determine the location of radiation isocenter to an accuracy of less than 1 mm using the EPID (Electronic Portal Imaging Device). The proposed solution uses a collimator setting of to acquire EPID images of a new phantom constructed from LEGO blocks. Images from a number of gantry and collimator angles are analyzed by automated analysis software to determine the position of the jaws and center of the phantom in each image. The distance between a chosen jaw and the phantom center is then compared to the same distance measured after a collimator rotation to determine if the phantom is centered in the dimension being investigated. Repeated tests show that the system is reproducibly independent of the imaging session, and calculated offsets of the phantom from radiation isocenter are a function of phantom setup only. Accuracy of the algorithm's calculated offsets were verified by imaging the LEGO phantom before and after applying the calculated offset. These measurements show that the offsets are predicted with an accuracy of approximately 0.3 mm, which is on the order of the detector's pitch. Comparison with a star‐shot analysis yielded agreement of isocenter location within 0.5 mm. Additionally, the phantom and software are completely independent of linac vendor, and this study presents results from two linac manufacturers. A Varian Optical Guidance Platform (OGP) calibration array was also integrated into the phantom to allow calibration of the OGP while the phantom is positioned at radiation isocenter to reduce setup uncertainty in the calibration. This solution offers a quick, objective method to perform isocenter localization as well as laser alignment and OGP calibration on a monthly basis. PACS number: 87.55.Qr
机译:这项研究的目的是开发一种幻影和分析软件,该软件可以使用EPID(电子门成像设备)快速准确地确定辐射等中心点的位置,精度小于1毫米。提出的解决方案使用准直仪设置来获取由LEGO块构造的新体模的EPID图像。通过自动分析软件对来自多个机架和准直仪角度的图像进行分析,以确定每个图像中的颌骨位置和体模中心。然后将选定的颌骨和幻影中心之间的距离与准直仪旋转后测量的相同距离进行比较,以确定幻影是否在所研究的尺寸中居中。重复测试表明,该系统可重现地独立于成像过程,并且幻像与辐射等角点的计算偏移仅是幻像设置的函数。在应用计算的偏移量之前和之后,通过对LEGO体模进行成像,可以验证算法计算的偏移量的准确性。这些测量结果表明,可以以大约0.3 mm的精度预测偏移,这大约是检测器间距的量级。与星光分析的比较得出等中心点位置在0.5 mm之内的一致性。此外,幻象和软件完全独立于直线加速器供应商,本研究提出了两家直线加速器制造商的结果。 Varian光学制导平台(OGP)校准阵列也集成到体模中,以允许在体模位于辐射等角点处进行OGP校准,以减少校准中的设置不确定性。该解决方案提供了一种快速,客观的方法来每月执行等中心线定位以及激光对准和OGP校准。 PACS编号:87.55.Qr

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