Barnes Michael P, Greer Peter B
Department of Radiation Oncology, Calvary Mater Hospital Newcastle, NSW, Australia.
School of Medical Radiation Sciences, University of Newcastle, Newcastle, NSW, Australia.
J Appl Clin Med Phys. 2017 Jan;18(1):139-150. doi: 10.1002/acm2.12016. Epub 2016 Nov 30.
Machine Performance Check (MPC) is an automated and integrated image-based tool for verification of beam and geometric performance of the TrueBeam linac. The aims of the study were to evaluate the MPC beam performance tests against current daily quality assurance (QA) methods, to compare MPC performance against more accurate monthly QA tests and to test the sensitivity of MPC to changes in beam performance. The MPC beam constancy checks test the beam output, uniformity, and beam center against the user defined baseline. MPC was run daily over a period of 5 months (n = 115) in parallel with the Daily QA3 device. Additionally, IC Profiler, in-house EPID tests, and ion chamber measurements were performed biweekly and results presented in a form directly comparable to MPC. The sensitivity of MPC was investigated using controlled adjustments of output, beam angle, and beam position steering. Over the period, MPC output agreed with ion chamber to within 0.6%. For an output adjustment of 1.2%, MPC was found to agree with ion chamber to within 0.17%. MPC beam center was found to agree with the in-house EPID method within 0.1 mm. A focal spot position adjustment of 0.4 mm (at isocenter) was measured with MPC beam center to within 0.01 mm. An average systematic offset of 0.5% was measured in the MPC uniformity and agreement of MPC uniformity with symmetry measurements was found to be within 0.9% for all beams. MPC uniformity detected a change in beam symmetry of 1.5% to within 0.3% and 0.9% of IC Profiler for flattened and FFF beams, respectively.
机器性能检查(MPC)是一种基于图像的自动化集成工具,用于验证TrueBeam直线加速器的射束和几何性能。本研究的目的是根据当前的每日质量保证(QA)方法评估MPC射束性能测试,将MPC性能与更精确的每月QA测试进行比较,并测试MPC对射束性能变化的敏感性。MPC射束稳定性检查针对用户定义的基线测试射束输出、均匀性和射束中心。在5个月的时间里(n = 115),MPC每天与Daily QA3设备并行运行。此外,每两周进行一次IC Profiler、内部EPID测试和电离室测量,并以与MPC直接可比的形式呈现结果。通过对输出、射束角度和射束位置控制进行受控调整,研究了MPC的敏感性。在此期间,MPC输出与电离室的一致性在0.6%以内。对于1.2%的输出调整,发现MPC与电离室的一致性在0.17%以内。发现MPC射束中心与内部EPID方法的一致性在0.1毫米以内。使用MPC射束中心测量等中心处0.4毫米的焦点位置调整,误差在0.01毫米以内。在MPC均匀性测量中测得平均系统偏移为0.5%,并且发现MPC均匀性与对称性测量的一致性对于所有射束均在0.9%以内。对于扁平射束和FFF射束,MPC均匀性分别检测到射束对称性变化的1.5%,误差在IC Profiler的0.3%和0.9%以内。