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Designing a range modulator wheel to spread-out the Bragg peak for a passive proton therapy facility

机译:设计范围调制器轮以扩展布拉格峰,用于被动质子治疗设施

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In proton beam therapy, a Spread-Out Bragg peak (SOBP) is used to establish a uniform dose distribution in the target volume. In order to create a SOBP, several Bragg peaks of different ranges, corresponding to different entrance energies, with certain intensities (weights) should be combined each other. In a passive beam scattering system, the beam is usually extracted from a cyclotron at a constant energy throughout a treatment. Therefore, a SOBP is produced by a range modulator wheel, which is basically a rotating wheel with steps of variable thicknesses, or by using the ridge filters. In this study, we used the Geant4 toolkit to simulate a typical passive scattering beam line. In particular, the CATANA transport beam line of INFN Laboratori Nazionali del Sud (LNS) in Catania has been reproduced in this work. Some initial properties of the entrance beam have been checked by benchmarking simulations with experimental data. A class dedicated to the simulation of the wheel modulators has been implemented. It has been designed in order to be easily modified for simulating any desired modulator wheel and, hence, any suitable beam modulation. By using some auxiliary range-shifters, a set of pristine Bragg peaks was obtained from the simulations. A mathematical algorithm was developed, using the simulated pristine dose profiles as its input, to calculate the weight of each pristine peak, reproduce the SOBP, and finally generate a flat dose distribution. Therefore, once the designed modulator has been realized, it has been tested at CATANA facility, comparing the experimental data with the simulation results.
机译:在质子束治疗中,扩散布拉格峰(SOBP)用于在目标体积中建立均匀的剂量分布。为了产生SOBP,应将具有一定强度(权重)的,对应于不同入射能量的不同范围的多个布拉格峰相互组合。在无源束散射系统中,通常在整个治疗过程中以恒定能量从回旋加速器中提取束。因此,通过范围调节轮(基本上是具有可变厚度步长的旋转轮)或通过使用脊形过滤器来产生SOBP。在这项研究中,我们使用Geant4工具包来模拟典型的被动散射光束线。特别是,在这项工作中复制了卡塔尼亚的INFN Laboratori Nazionali del Sud(LNS)的CATANA运输光束线。通过使用实验数据进行基准测试,检查了入射光束的一些初始特性。已经实现了专门用于模拟车轮调制器的类。它被设计为易于修改,以模拟任何所需的调制轮,从而模拟任何合适的光束调制。通过使用一些辅助的范围移动器,从模拟中获得了一组原始的布拉格峰。开发了一种数学算法,使用模拟的原始剂量分布作为输入,计算每个原始峰的重量,重现SOBP,最后生成平坦的剂量分布。因此,一旦实现了设计的调制器,便已在CATANA设施进行了测试,将实验数据与仿真结果进行了比较。

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