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首页> 外文期刊>Radiation measurements >Evaluation of the dosimetric characteristics of a radiophotoluminescent glass dosimeter for high-energy photon and electron beams in the field of radiotherapy
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Evaluation of the dosimetric characteristics of a radiophotoluminescent glass dosimeter for high-energy photon and electron beams in the field of radiotherapy

机译:放射治疗领域中用于高能光子和电子束的放射光致发光玻璃剂量计的剂量特性评估

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We aimed to evaluate the suitability of a glass dosimeter (GD) for high-energy photon and electron beams in experimental and clinical use, especially for radiation therapy. We examined the expanded dosimetric characteristics of GDs including dose linearity up to 500 Gy, uniformity among GD lots and for individual GDs, the angular dependence, and energy dependence of 4 therapeutic x-ray qualities. In addition, we measured the dosimetric features (dose linearity, uniformity, angular dependence, and energy dependence) of the GD for electron beams of 10 different electron energy qualities. All measurements with the exception of dose linearity for photon beam were performed in a water phantom. For high-energy photon beams, dose linearity has a linear relationship for a dose ranging from 1 to 500 Gy with the coefficient of determination; R~2 of 0.998. The uniformity of each GD of dose measurements was within ±0.5% for four GD lots and within ±1.2% for 80 GDs. In terms of the effects of photon beam angle, lower absorbed doses of within 1.0% were observed between 60° and 105° than at 90°. The GD energy dependence of 4 photon beam energy qualities was within ±2.0%. On the other hand, the result of the dose linearity for high-energy electron beams showed well fitted regression line with the coefficient of determination; R~2 of 0.999 between 6 and 20 MeV. The uniformity of GDs exposed to the nominal electron energies 6, 9, 12, 16, and 20 MeV was ±1.2%. In terms of the angular dependence to electron beams, absorbed doses were within 2.0% between 60° and 105° than at 90°. In evaluation of the energy dependence of the GD at nominal electron energies between 5 and 20 MeV, we obtained responses between 1.1% and 3.5% lower than that for a cobalt-60 beam. Our results show that GDs can be used as a detector for determining doses when a high-energy photon beam is used, and that it also has considerable potential for dose measurement of high-energy electron beam.
机译:我们旨在评估玻璃剂量计(GD)在实验和临床应用中,尤其是放射治疗中,对高能光子和电子束的适用性。我们检查了GD的扩展剂量特性,包括高达500 Gy的剂量线性,GD批次之间以及单个GD的均匀性,角度依赖性和4种治疗X射线质量的能量依赖性。此外,我们针对10种不同电子能量质量的电子束,测量了GD的剂量学特征(剂量线性,均匀性,角度依赖性和能量依赖性)。在水体模中进行除光子束剂量线性以外的所有测量。对于高能光子束,剂量线性与剂量系数具有1至500 Gy的线性关系; R〜2为0.998。四个GD批次的每个GD剂量测量的均匀度在±0.5%内,而80 GDs的均匀度在±1.2%之内。就光子束角的影响而言,在60°至105°之间观察到的吸收剂量低于90°处1.0%以内。四个光子束能量质量的GD能量依赖性在±2.0%以内。另一方面,高能电子束剂量线性的结果显示出与测定系数的拟合线非常吻合。 6〜20 MeV之间的R〜2为0.999。暴露于标称电子能量6、9、12、16和20 MeV的GDs的均匀度为±1.2%。就对电子束的角度依赖性而言,在60°至105°之间的吸收剂量比在90°处的吸收剂量在2.0%以内。在评估GD在5到20 MeV之间的标称电子能量时的能量依赖性时,我们获得的响应比60钴离子束的响应低1.1%至3.5%。我们的结果表明,当使用高能光子束时,GDs可以用作确定剂量的检测器,并且它在高能电子束的剂量测量中也具有相当大的潜力。

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