Olasolo-Alonso José, Vázquez-Galiñanes Alejandro, Pellejero-Pellejero Santiago, Pérez-Azorín José Fernando
Medical Physics Department, OSI Araba, Hospital Universitario Araba, Cl. Jose Atxotegi s/n, Vitoria-Gasteiz, Araba, Spain.
Medical Physics Department, Centro de Investigación Biomédica de La Rioja, Cl. Piqueras 98, Logroño, La Rioja, Spain.
Phys Med. 2017 Jan;33:87-94. doi: 10.1016/j.ejmp.2016.12.013. Epub 2017 Jan 5.
This multi-institution study assessed the positioning accuracy of multileaf collimators (MLC) by analyzing log files. It determined the main machine parameters that affect MLC positioning errors for pre-TrueBeam (Clinac) and TrueBeam linacs.
Around 30,000 dIMRT and VMAT log files belonging to 6 linacs from 4 different centers were analyzed. An in-house software was used to calculate 95th percentile and RMS error values and their correlation with certain parameters such as maximum leaf speed, mean leaf speed and gantry angle. The effect of MLC communication delay on error statistics was assessed in Clinac linacs. To that end MLC positioning error statistics were calculated with and without the delay effect.
For dIMRT treatments in Clinac linacs the mean leaf RMS error was 0.306mm with and 0.030mm without the delay effect. Leaf RMS error was closely linked to maximum and mean leaf speeds, but without the delay effect that link was weaker. No trend was observed between bank RMS error and gantry angle. Without the delay effect larger bank RMS errors were obtained for gantry angles with leaf movements against gravity. For VMAT treatments in TrueBeam linacs the mean leaf RMS error was 0.038mm. A link was also observed between leaf RMS error and maximum and mean leaf speeds.
TrueBeam MLC positioning errors are substantially lower than those of Clinac linacs. In Clinac machines the analysis of dynalogs without the delay effect allows us to study the influence of factors that are masked by the delay effect.
这项多机构研究通过分析日志文件评估了多叶准直器(MLC)的定位精度。它确定了影响前TrueBeam(直线加速器)和TrueBeam直线加速器MLC定位误差的主要机器参数。
分析了来自4个不同中心的6台直线加速器的约30000个动态调强放疗(dIMRT)和容积调强弧形治疗(VMAT)日志文件。使用内部软件计算第95百分位数和均方根误差值,以及它们与某些参数(如最大叶片速度、平均叶片速度和机架角度)的相关性。在直线加速器中评估了MLC通信延迟对误差统计的影响。为此,计算了有无延迟效应时的MLC定位误差统计数据。
对于直线加速器中的dIMRT治疗,有延迟效应时叶片平均均方根误差为0.306mm,无延迟效应时为0.030mm。叶片均方根误差与最大和平均叶片速度密切相关,但无延迟效应时这种联系较弱。未观察到叶库均方根误差与机架角度之间的趋势。无延迟效应时,对于叶片向重力方向移动的机架角度,叶库均方根误差更大。对于TrueBeam直线加速器中的VMAT治疗,叶片平均均方根误差为0.038mm。还观察到叶片均方根误差与最大和平均叶片速度之间的联系。
TrueBeam MLC定位误差明显低于直线加速器。在直线加速器中,对无延迟效应的动态日志进行分析,能让我们研究被延迟效应掩盖的因素的影响。