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首页> 外文期刊>Medical Physics >Photon beam quality variations of a flattening filter free linear accelerator.
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Photon beam quality variations of a flattening filter free linear accelerator.

机译:平整无滤波器线性加速器的光子束质量变化。

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摘要

PURPOSE: Recently, there has been an increasing interest in operating conventional linear accelerators without a flattening filter. The aim of this study was to determine beam quality variations as a function of off-axis ray angle for unflattened beams. In addition, a comparison was made with the off-axis energy variation in flattened beams. METHODS: Two Elekta Precise linear accelerators were modified in order to enable radiation delivery with and without the flattening filter in the beam line. At the Medical University Vienna (Vienna, Austria), half value layer (HVL) measurements were performed for 6 and 10 MV with an in-house developed device that can be easily mounted on the gantry. At St. Luke's Hospital (Dublin, Ireland), measurements were performed at 6 MV in narrow beam geometry with the gantry tilted around 270 degrees with pinhole collimators, an attenuator, and the chamber positioned on the table. All attenuation measurements were performed with ionization chambers and a buildup cap (2 mm brass) or a PMMA mini phantom (diameter 3 cm, measurement depth 2.5 cm). RESULTS: For flattened 6 and 10 MV photon beams from the Elekta linac the relative HVL(theta) varies by about 11% for an off-axis ray angle theta = 10 degrees. These results agree within +/- 2% with a previously proposed generic off-axis energy correction. For unflattened beams, the variation was less than 5% in the whole range of off-axis ray angles up to 10 degrees. The difference in relative HVL data was less than 1% for unflattened beams at 6 and 10 MV. CONCLUSIONS: Off-axis energy variation is rather small in unflattened beams and less than half the one for flattened beams. Thus, ignoring the effect of off-axis energy variation for dose calculations in unflattened beams can be clinically justified.
机译:用途:最近,人们对在不使用滤波器平坦的情况下操作常规线性加速器的兴趣日益浓厚。这项研究的目的是确定光束质量变化与未展平光束的离轴射线角度的关系。此外,还对扁平光束中的轴外能量变化进行了比较。方法:修改了两个Elekta Precise线性加速器,以实现在光束线带有或不带有扁平滤波器的情况下进行辐射传输。在维也纳医科大学(奥地利维也纳),使用可轻松安装在龙门架上的内部开发设备对6和10 MV进行了半值层(HVL)测量。在爱尔兰都柏林的圣卢克医院(St. Luke's Hospital),在6 MV的窄光束几何条件下进行了测量,门架倾斜了270度,并带有针孔准直仪,衰减器以及放置在桌子上的腔室。所有衰减测量均使用电离室和堆积帽(2毫米黄铜)或PMMA微型体模(直径3厘米,测量深度2.5厘米)进行。结果:对于来自Elekta直线加速器的6和10 MV平坦的光子束,对于离轴射线角度theta = 10度,相对HVL(θ)变化约11%。这些结果与先前提出的通用离轴能量校正在+/- 2%的范围内。对于未展平的光束,在高达10度的整个轴外射线角度范围内,变化小于5%。对于在6和10 MV下未展平的光束,相对HVL数据的差异小于1%。结论:在未展平的光束中,轴外能量变化很小,而对于展平的光束,其轴能量变化不到一半。因此,在临床上可以忽略不平直能量变化对未展平光束中剂量计算的影响。

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