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Efficient quality assurance method with automated data acquisition of a single phantom setup to determine radiation and imaging isocenter congruence

机译:高效的质量保证方法可通过自动获取单个幻像装置的数据来确定辐射和成像等中心点的一致性

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摘要

We developed a quality assurance (QA) method to determine the isocenter congruence of Optical Surface Monitoring System (OSMS, Varian, CA, USA), kilovoltage (kV), and megavoltage (MV) imaging, and the radiation isocenter using a single setup of the OSMS phantom for frameless Stereotactic Radiosurgery (SRS) treatment. After aligning the phantom to the OSMS isocenter, a cone‐beam computed tomography (CBCT) of the phantom was acquired and registered to a computed tomography (CT) scan of the phantom to determine the CBCT isocenter. Without moving the phantom, MV and kV images were simultaneously acquired at four gantry angles to localize MV and kV isocenters. Then, Winston‐Lutz (W‐L) test images of the central BB in the phantom were acquired to analyze the radiation isocenter. The gantry and couch were automatically controlled using the TrueBeam Developer Mode during MV, kV, and W‐L image acquisition. All the images were acquired weekly for 17 weeks to track the congruence of all the imaging modalities' isocenter in six‐dimensional (6D) translations and rotations, and the radiation isocenter in three‐dimensional (3D) translations. The shifts of isocenters of all imaging modalities and the radiation isocenter from the OSMS isocenter were within 0.2 mm and 0.2° on average over 17 weeks. The maximum discrepancy between OSMS and other imaging modalities or radiation isocenters was 0.8 mm and 0.3°. However, systematic shifts of radiation isocenter anteriorly and laterally relative to the OSMS isocenter were observed. The measured discrepancies were consistent from week‐to‐week except for two weeks when the isocenter discrepancies of 0.8 mm were noted due to drifts of the OSMS isocenter. Once recalibration was performed on OSMS, the discrepancy was reduced to 0.3 mm and 0.2°.By performing the proposed QA on a weekly basis, the isocenter congruencies of multiple imaging systems and radiation isocenter were validated for a linear accelerator.
机译:我们开发了一种质量保证(QA)方法来确定光学表面监测系统(OSMS,Varian,CA,USA),千伏(kV)和兆伏(MV)成像以及辐射等中心线的等中心点一致性,并使用OSMS体模用于无框立体定向放射外科(SRS)治疗。将体模与OSMS等中心对齐后,获取体模的锥形束计算机断层扫描(CBCT),并将其配准到体模的计算机断层扫描(CT)扫描以确定CBCT等中心。在不移动模型的情况下,同时在四个龙门角度采集了MV和kV图像,以定位MV和kV等中心点。然后,获取幻影中央BB的Winston-Lutz(W-L)测试图像,以分析辐射等中心点。在MV,kV和W‐L图像采集期间,使用TrueBeam开发人员模式自动控制龙门和沙发。每周采集所有图像17周,以跟踪所有成像模态的等角点在六维(6D)平移和旋转中的一致性,以及辐射等角点在三维(3D)平移中的一致性。所有成像模式的等角点和OSMS等角点的辐射等角点的偏移在17周内平均在0.2mm和0.2°之内。 OSMS与其他成像方式或辐射等中心线之间的最大差异为0.8mm和0.3°。但是,观察到辐射等中心线相对于OSMS等中心线的系统偏移。除了两周由于OSMS等中心点的漂移而记录的等中心点差异为0.8毫米外,每周到一周的测量差异均一致。在OSMS上进行重新校准后,差异减小到0.3mm和0.2°。通过每周执行建议的QA,验证了多个成像系统的等角点一致性和辐射等角点是否适用于线性加速器。

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