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Evaluation of the PTW microDiamond in edge‐on orientation for dosimetry in small fields

机译:小型田地剂量测定边缘定位的PTW微摩变评估

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Purpose The PTW microDiamond has an enhanced spatial resolution when operated in an edge‐on orientation but is not typically utilized in this orientation due to the specifications of the IAEA TRS‐483 code of practice for small field dosimetry. In this work the suitability of an edge‐on orientation and advantages over the recommended face‐on orientation will be presented. Methods The PTW microDiamond in both orientations was compared on a Varian TrueBeam linac for: machine output factor (OF), percentage depth dose (PDD), and beam profile measurements from 10?×?10?cm2 to a 0.5?×?0.5?cm2 field size for 6X and 6FFF beam energies in a water tank. A quantification of the stem effect was performed in edge‐on orientation along with tissue to phantom ratio (TPR) measurements. An extensive angular dependence study for the two orientations was also undertaken within two custom PMMA plastic cylindrical phantoms. Results The OF of the PTW microDiamond in both orientations agrees within 1% down to the 2?×?2?cm2 field size. The edge‐on orientation overresponds in the build‐up region but provides improved penumbra and has a maximum observed stem effect of 1%. In the edge‐on orientation there is an angular independent response with a maximum of 2% variation down to a 2?×?2?cm2 field. The PTW microDiamond in edge‐on orientation for TPR measurements agreed to the CC01 ionization chamber within 1% for all field sizes. Conclusions The microDiamond was shown to be suitable for small field dosimetry when operated in edge‐on orientation. When edge‐on, a significantly reduced angular dependence is observed with no significant stem effect, making it a more versatile QA instrument for rotational delivery techniques.
机译:目的,PTW Microdiamond在以边缘定向操作时具有增强的空间分辨率,但由于IAEA TRS-483的小型小型剂量测定法的实践守则的规格,通常不在该方向上使用。在这项工作中,将介绍边缘定向和优点的适用性将呈现出推荐的面对面方向。方法对两个方向中的PTW Microdiamond在Varian Truebeam Linac上进行了比较:机器输出系数(OF),百分比深度剂量(PDD),以及从10?×10?CM2到0.5?×0.5的光束轮廓测量和光束轮廓测量。 CM2场尺寸为水箱中的6倍和6个射线能量。茎效应的定量以边缘定向和组织与幻象比(TPR)测量进行。在两个定制PMMA塑料圆柱形模型中也进行了对两种方向的广泛角度依赖性研究。结果两种方向的PTW Microdiamond的结果一致在1%之内到2?×2?2?CM2场大小。边缘定向在堆积区域中相应,但提供改善的半影,最大观察到的茎效应为1%。在边缘方向上,有一个角度独立的响应,最多2%变化到2?×2?2?CM2场。 PTW Microdiamond在TPR测量的边缘方向上同意所有场尺寸的1%内的CC01电离室。结论在以边缘定向操作时,Microdiamond被示出适用于小型现场剂量测定。当边缘开启时,观察到显着减小的角度依赖性,没有显着的茎效应,使其成为旋转输送技术的更通用的QA仪器。

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