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Dosimetric verification in water of a Monte Carlo treatment planning tool for proton, helium, carbon and oxygen ion beams at the Heidelberg Ion Beam Therapy Center

机译:Heidelberg离子束治疗中心的质子,氦气,碳和氧离子束的蒙特卡罗治疗计划工具水中验证

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摘要

The introduction of 'new' ion species in particle therapy needs to be supported by a thorough assessment of their dosimetric properties and by treatment planning comparisons with clinically used proton and carbon ion beams. In addition to the latter two ions, helium and oxygen ion beams are foreseen at the Heidelberg Ion Beam Therapy Center (HIT) as potential assets for improving clinical outcomes in the near future. We present in this study a dosimetric validation of a FLUKA-based Monte Carlo treatment planning tool (MCTP) for protons, helium, carbon and oxygen ions for spread-out Bragg peaks in water. The comparisons between the ions show the dosimetric advantages of helium and heavier ion beams in terms of their distal and lateral fall-offs with respect to protons, reducing the lateral size of the region receiving 50% of the planned dose up to 12 mm. However, carbon and oxygen ions showed significant doses beyond the target due to the higher fragmentation tail compared to lighter ions (p and He), up to 25%. The Monte Carlo predictions were found to be in excellent geometrical agreement with the measurements, with deviations below 1 mm for all parameters investigated such as target and lateral size as well as distal fall-offs. Measured and simulated absolute dose values agreed within about 2.5% on the overall dose distributions. The MCTP tool, which supports the usage of multiple state-of-the-art relative biological effectiveness models, will provide a solid engine for treatment planning comparisons at HIT.
机译:在临床使用的质子和碳离子束的情况下,需要通过彻底评估颗粒治疗中的颗粒疗法中的“新”离子物种。除了后两离子外,氦气和氧离子束在海德堡离子束治疗中心(命中)是潜在资产,用于在不久的将来改善临床结果。我们在本研究中展示了一种用于质子,氦气,碳和氧离子的Fluka的Monte Carlo治疗计划工具(MCTP)的剂量验证,用于在水中分散的布拉格峰。离子之间的比较显示了氦气和较重离子束的相对于质子的远端和横向掉偏移,减小了高达12mm的50%的区域的横向尺寸。然而,由于较轻的离子(P和HE),碳和氧离子由于较高的碎裂尾部而显示出超出靶的显着剂量,高达25%。蒙特卡洛预测被认为是与测量优良几何协议,与偏差小于1mm所有参数研究如目标和横向尺寸,以及远端下降取舍。测量和模拟的绝对剂量值在总剂量分布上约为2.5%。支持多种最先进的相对生物效率模型的MCTP工具将提供一个用于治疗计划比较的实心发动机。

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