首页> 外文期刊>Journal of applied clinical medical physics / >Surface and build‐up dose comparison between Elekta 6?MV flattening filter and flattening‐filter‐free beams using an advanced Markus ionization chamber and a solid water‐equivalent phantom
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Surface and build‐up dose comparison between Elekta 6?MV flattening filter and flattening‐filter‐free beams using an advanced Markus ionization chamber and a solid water‐equivalent phantom

机译:使用先进的马克电离室和固体水当量模拟的ELEKTA 6?MV扁平滤波器和无平化滤光梁的表面和积聚剂量比较

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Using a plane‐parallel advanced Markus ionization chamber and a stack of water‐equivalent solid phantom blocks, percentage surface and build‐up doses of Elekta 6?MV flattening filter (FF) and flattening‐filter‐free (FFF) beams were measured as a function of the phantom depth for field sizes ranging from 2?×?2 to 10?×?10?cm 2 . It was found that the dose difference between the FF and the FFF beams was relatively small. The maximum dose difference between the FF and the FFF beams was 4.4% at a depth of 1?mm for a field size of 2?×?2?cm 2 . The dose difference was gradually decreased while the field size was increased up to 10?×?10?cm 2 . The measured data were also compared to published Varian FF and FFF data, suggesting that the percentage surface and build‐up doses as well as the percentage dose difference between FF and FFF beams by our Elekta linac were smaller than those by the Varian linac.
机译:使用平面平行的先进马克电离室和一堆水当量的固体幻影块,百分比表面和嵌入剂量的ELEKTA 6?MV扁平滤波器(FF)和无扁平滤水(FFF)梁(FFF)梁用于场尺寸的幻像深度的函数范围从2?×2到10?×10?cm 2。发现FF和FFF光束之间的剂量差相对较小。 FF和FFF光束之间的最大剂量差为4.4%,深度为1Ωmm,用于2Ω·×2Ω·cm 2的场尺寸。当场尺寸增加到10Ω·×10?cm 2时,剂量差异逐渐降低。测量的数据也与发表的Varian FF和FFF数据进行比较,表明我们的ELEKTA LINAC的FF和FFF梁之间的百分比和积聚剂量以及FF和FFF光束之间的百分比差异小于Varian Linac的百分比。

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