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Analysis of quality control data of eight modern radiotherapy linear accelerators: the short- and long-term behaviours of the outputs and the reproducibility of quality control measurements

机译:八种现代放射疗法线性加速器的质量控制数据分析:输出的短期和长期行为以及质量控制测量值的可重复性

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摘要

Quality control (QC) data of radiotherapy linear accelerators, collected by Helsinki University Central Hospital between the years 2000 and 2004, were analysed. The goal was to provide information for the evaluation and elaboration of QC of accelerator outputs and to propose a method for QC data analysis. Short-and long-term drifts in outputs were quantified by fitting empirical mathematical models to the QC measurements. Normally, long-term drifts were well (<= 1%) modelled by either a straight line or a single-exponential function. A drift of 2% occurred in 18 +/- 12 months. The shortest drift times of only 2-3 months were observed for some new accelerators just after the commissioning but they stabilized during the first 2-3 years. The short-term reproducibility and the long-term stability of local constancy checks, carried out with a sealed plane parallel ion chamber, were also estimated by fitting empirical models to the QC measurements. The reproducibility was 0.2-0.5% depending on the positioning practice of a device. Long-term instabilities of about 0.3%/ month were observed for some checking devices. The reproducibility of local absorbed dose measurements was estimated to be about 0.5%. The proposed empirical model fitting of QC data facilitates the recognition of erroneous QC measurements and abnormal output behaviour, caused by malfunctions, offering a tool to improve dose control.
机译:分析了赫尔辛基大学中心医院在2000年至2004年之间收集的放射治疗线性加速器的质量控制(QC)数据。目的是为加速器输出的质量控制的评估和阐述提供信息,并提出一种质量控制数据分析的方法。通过将经验数学模型拟合到QC测量中,可以量化输出中的短期和长期漂移。通常,通过直线或单指数函数可以很好地模拟长期漂移(<= 1%)。在18 +/- 12个月内发生了2%的漂移。刚调试后,一些新型加速器的漂移时间最短,仅为2-3个月,但在最初的2-3年内稳定下来。通过将经验模型拟合到QC测量中,还可以估计在密封平面平行离子室中进行的局部稳定性检查的短期可重复性和长期稳定性。根据设备的定位方式,可重复性为0.2-0.5%。对于某些检查设备,观察到长期不稳定性,约为每月0.3%。局部吸收剂量测量的可重复性估计约为0.5%。拟议的QC数据经验模型拟合有助于识别由故障引起的错误QC测量和异常输出行为,从而提供了改进剂量控制的工具。

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