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Impact of detector selections on inter‐institutional variability of flattening filter‐free beam data for TrueBeam™ linear accelerators

机译:检测器选择对TrueBeam™线性加速器的平坦化无滤波器波束数据的机构间可变性的影响

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摘要

This study evaluates the type of detector influencing the inter‐institutional variability in flattening filter‐free (FFF) beam‐specific parameters for TrueBeam™ linear accelerators (Varian Medical Systems,Palo Alto, CA, USA). Twenty‐four beam data sets, including the percent depth dose (PDD), off‐center ratio (OCR), and output factor (OPF) for modeling within the Eclipse (Varian Medical Systems) treatment planning system, were collected from 19 institutions. Although many institutions collected the data using CC13 (IBA Dosimetry, Schwarzenbruck, Germany) or semiflex (PTW Freiburg, Freiburg, Germany) ionization chambers, some institutions used diode detectors, diamond detectors, and ionization chambers with smaller cavities. The OCR data included penumbra width, full width at half maximum (FWHM), and FFF beam‐specific parameters, including unflatness and slope. The data measured by CC13/ ionization chambers were compared with those measured by all other detectors. PDD data demonstrated the variations within ±1% at the dose fall‐off region deeper than peak depth. The penumbra widths of the OCR measured with the CC13/ detectors were significantly larger than those measured with all other detectors (   PTW31010 detectors for the 30 × 30 mm field. There was no difference in the FWHM, unflatness, and slope parameters between the values for the CC13/ detectors and all other detectors. OPF curves demonstrated small variations, and the relative difference from the mean value of each data point was almost within 1% for all field sizes. Although the penumbra region exhibited detector‐dependent variations, all other parameters showed tiny interunit variations regardless of the detector type.
机译:这项研究评估了影响TrueBeam™线性加速器的扁平化无滤波器(FFF)光束特定参数中机构间可变性的检测器类型(美国加利福尼亚州帕洛阿尔托的瓦里安医疗系统公司)。从19个机构中收集了二十四个射线数据集,包括深度剂量百分比(PDD),偏心率(OCR)和输出因子(OPF),用于在Eclipse(Varian Medical Systems)治疗计划系统中进行建模。尽管许多机构使用CC13(IBA剂量法,德国Schwarzenbruck,德国)或Semiflex(PTW Freiburg,德国Freiburg,德国)电离室收集数据,但一些机构还是使用二极管检测器,金刚石检测器和具有较小腔体的电离室。 OCR数据包括半影宽度,半峰全宽(FWHM)和FFF光束特定的参数,包括不平坦度和倾斜度。将CC13 /电离室测得的数据与所有其他检测器测得的数据进行比较。 PDD数据表明,在比峰深更深的剂量下降区域,变化在±1%以内。使用CC13 /探测器测量的OCR的半影宽度显着大于使用所有其他探测器(用于30×30 mm场的PTW31010探测器)测量的半影宽度.FWHM,不平坦度和斜率参数之间的差异在CC13 /检测器和所有其他检测器。OPF曲线显示出很小的变化,在所有场尺寸下,与每个数据点的平均值的相对差几乎在1%以内。尽管半影区表现出取决于检测器的变化,但所有其他参数不论探测器类型如何,其单元间变化都很小。

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