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Dose perturbations at heterogeneous interfaces in radiotherapy — An EGSnrc based Monte Carlo investigation

机译:放疗中异质性界面处的剂量扰动—基于EGSnrc的蒙特卡洛研究

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Radiotherapy dose computation in the presence of tissue heterogeneities presents a challenge for the treatment planning system (TPS). This study presents a Monte Carlo (MC) investigation of dose perturbation due to various kinds of heterogeneities (soft tissue interfaces with bone, air, lung and metallic implants) for a range of clinically useful photon energies and field sizes. EGSnrc MC radiation transport code has been used for linear accelerator head modeling and phantom dose calculations. Dose perturbations were quantified in terms of forward- and backscatter factors as well as inside the heterogeneity of low densities for various field sizes including 5 × 5 cm2, 10 × 10 cm2 and 15 × 15 cm2. For lung heterogeneity, both under-dosage and over-dosage has been assessed in relation to the field sizes and energies. These simulations confirm under-dosage in the case of lung heterogeneity for small field sizes, which increases with the energy. However, lung tissues reflect an overdose with smaller energies and larger field sizes.
机译:在存在组织异质性的情况下进行放射治疗剂量计算对治疗计划系统(TPS)提出了挑战。这项研究针对各种临床有用的光子能量和视场大小,对由于各种异质性(与骨骼,空气,肺和金属植入物的软组织界面)引起的剂量扰动进行了蒙特卡洛(MC)研究。 EGSnrc MC辐射传输代码已用于线性加速器头建模和幻像剂量计算。根据前向散射和后向散射因子以及内部低密度对各种场大小(包括5×5 cm2、10×10 cm2和15×15 cm2)的异质性,对剂量扰动进行了量化。对于肺异质性,剂量不足和剂量过量均已根据视野大小和能量进行了评估。这些模拟结果证实了在小范围的肺异质性情况下剂量不足,其随能量的增加而增加。然而,肺组织反映出能量较小且视野较大的药物过量。

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