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Study on energy dependence of PAGAT polymer gel dosimeter evaluated using X-Ray CT

机译:用X射线CT评估PAGAT聚合物凝胶剂量计的能量依赖性研究。

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摘要

The normoxic polymer gel dosimeter evaluated with X-Ray computed tomography has emerged as a promising tool for measuring the dose delivered during radiotherapy in three dimensions. This study presents the dependence of PAGAT normoxic polymer gel sensitivity to different photon and electron energies. PAGAT polymer gel was prepared under normal atmospheric condition and irradiated with different photon energies of 1.25 MeV from Co-60 and 6 MV and 15 MV from linear accelerator and electron energies of 6, 9, 12, 15, 18 and 21 MeV from linear accelerator. Evaluation of dosimeter was performed with an X-Ray CT scanner. Images were acquired with optimum scanning protocols to reduce the signal-to-noise ratio. The averaged image was subtracted from the unirradiated polymer gel image for background. Central axis depth dose (PDD) curves obtained for each energy and polymer gel dosimeter measurements were in good agreement with diode and film measurements. Hounsfield (HU) - dose response curve for each photon and electron energy were derived from the PDD curve obtained from the gel dosimeter measurements. From the study it was clear that the HU-dose response curve was linear in the region 1-10 Gy. The dosimeter sensitivity was defined as a slope of these linear HU-dose response curves and found that the sensitivity of polymer gel decreases with increase in both photon and electron energies. This trend in dependence of PAGAT gel dosimeter sensitivity to different photon and electron energies was not dosimetrically significant. However, to evaluate the test phantom exposed with one energy using the calibration curve derived at another energy can produce clinically significant error.
机译:通过X射线计算机断层扫描评估的常氧聚合物凝胶剂量计已成为一种有前途的工具,可用于从三个方面测量放疗期间的剂量。这项研究提出了PAGAT常氧聚合物凝胶敏感性对不同光子和电子能量的依赖性。在正常大气条件下制备PAGAT聚合物凝胶,并用Co-60和6 MV分别以1.25 MeV和线性加速器的15 MV的光子能量和线性加速器6、9、12、15、18和21 MeV的电子能量的不同光子能量辐照。用X射线CT扫描仪进行剂量计的评估。使用最佳扫描协议获取图像以降低信噪比。从未辐照的聚合物凝胶图像中减去平均图像作为背景。每次能量和聚合物凝胶剂量计测量获得的中心轴深度剂量(PDD)曲线与二极管和薄膜测量结果非常吻合。 Hounsfield(HU)-每个光子和电子能量的剂量响应曲线是从凝胶剂量计测量获得的PDD曲线得出的。从研究中可以清楚地看出,HU-剂量反应曲线在1-10 Gy范围内是线性的。剂量计灵敏度定义为这些线性HU剂量响应曲线的斜率,并且发现聚合物凝胶的灵敏度随光子和电子能量的增加而降低。 PAGAT凝胶剂量计对不同光子和电子能量的敏感性的这种趋势在剂量学上并不显着。但是,使用从另一种能量导出的校准曲线评估用一种能量暴露的测试体模会产生临床上显着的误差。

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