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首页> 外文期刊>Australasian physical & engineering sciences in medicine >Evaluation of the effect of tooth and dental restoration material on electron dose distribution and production of photon contamination in electron beam radiotherapy
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Evaluation of the effect of tooth and dental restoration material on electron dose distribution and production of photon contamination in electron beam radiotherapy

机译:评估牙齿和牙齿修复材料对电子束放射治疗中电子剂量分布和产生光子污染的影响

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摘要

The aim of this study is to evaluate the effect of tooth and dental restoration materials on electron dose distribution and photon contamination production in electron beams of a medical linac. This evaluation was performed on 8, 12 and 14 MeV electron beams of a Siemens Primus linac. MCNPX Monte Carlo code was utilized and a 10 x 10 cm(2) applicator was simulated in the cases of tooth and combinations of tooth and Ceramco C3 ceramic veneer, tooth and Eclipse alloy and tooth and amalgam restoration materials in a soft tissue phantom. The relative electron and photon contamination doses were calculated for these materials. The presence of tooth and dental restoration material changed the electron dose distribution and photon contamination in phantom, depending on the type of the restoration material and electron beam's energy. The maximum relative electron dose was 1.07 in the presence of tooth including amalgam for 14 MeV electron beam. When 100.00 cGy was prescribed for the reference point, the maximum absolute electron dose was 105.10 cGy in the presence of amalgam for 12 MeV electron beam and the maximum absolute photon contamination dose was 376.67 mu Gy for tooth in 14 MeV electron beam. The change in electron dose distribution should be considered in treatment planning, when teeth are irradiated in electron beam radiotherapy. If treatment planning can be performed in such a way that the teeth are excluded from primary irradiation, the potential errors in dose delivery to the tumour and normal tissues can be avoided.
机译:这项研究的目的是评估牙齿和牙科修复材料对医用直线加速器电子束中电子剂量分布和光子污染产生的影响。该评估是对Siemens Primus直线加速器的8、12和14 MeV电子束进行的。使用了MCNPX蒙特卡洛代码,并在软组织体模中的牙齿以及牙齿和Ceramco C3陶瓷贴面,牙齿和Eclipse合金以及牙齿和汞齐修复材料的组合中模拟了10 x 10 cm(2)的涂药器。计算了这些材料的相对电子和光子污染剂量。牙齿和牙齿修复材料的存在改变了幻像中的电子剂量分布和光子污染,具体取决于修复材料的类型和电子束的能量。在含有汞齐的牙齿中,对于14 MeV电子束,最大相对电子剂量为1.07。当为参考点规定100.00 cGy时,在存在汞齐的情况下,对于12 MeV电子束,最大绝对电子剂量为105.10 cGy,对于14 MeV电子束中的牙齿,最大绝对光子污染剂量为376.67 mu Gy。在电子束放射治疗中照射牙齿时,应在治疗计划中考虑电子剂量分布的变化。如果可以以将牙齿排除在一次照射之外的方式执行治疗计划,则可以避免向肿瘤和正常组织的剂量输送中的潜在错误。

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