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220.5 MeV/u氦离子束正向混合离子场的研究:水靶与聚甲基丙烯酸甲酯靶的比较

Investigation of mixed ion fields in the forward direction for 220.5 MeV/u helium ion beams: comparison between water and PMMA targets.

作者信息

Aricò G, Gehrke T, Jakubek J, Gallas R, Berke S, Jäkel O, Mairani A, Ferrari A, Martišíková M

机构信息

Department of Radiation Oncology, Heidelberg University Hospital, Im Neuenheimer Feld 400, 69120 Heidelberg, Germany. Medical Physics in Radiation Oncology, German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, 69120 Heidelberg, Germany. Heidelberg Institute for Radiation Oncology (HIRO), National Center for Radiation Research in Oncology, Im Neuenheimer Feld 400, Heidelberg, Germany.

出版信息

Phys Med Biol. 2017 Oct 3;62(20):8003-8024. doi: 10.1088/1361-6560/aa875e.

Abstract

Currently there is a rising interest in helium ion beams for radiotherapy. For benchmarking of the physical beam models used in treatment planning, there is a need for experimental data on the composition and spatial distribution of mixed ion fields. Of particular interest are the attenuation of the primary helium ion fluence and the build-up of secondary hydrogen ions due to nuclear interactions. The aim of this work was to provide such data with an enhanced precision. Moreover, the validity and limits of the mixed ion field equivalence between water and PMMA targets were investigated. Experiments with a 220.5 MeV/u helium ion pencil beam were performed at the Heidelberg Ion-Beam Therapy Center in Germany. The compact detection system used for ion tracking and identification was solely based on Timepix position-sensitive semiconductor detectors. In comparison to standard techniques, this system is two orders of magnitude smaller, and provides higher precision and flexibility. The numbers of outgoing helium and hydrogen ions per primary helium ion as well as the lateral particle distributions were quantitatively investigated in the forward direction behind water and PMMA targets with 5.2-18 cm water equivalent thickness (WET). Comparing water and PMMA targets with the same WET, we found that significant differences in the amount of outgoing helium and hydrogen ions and in the lateral particle distributions arise for target thicknesses above 10 cm WET. The experimental results concerning hydrogen ions emerging from the targets were reproduced reasonably well by Monte Carlo simulations using the FLUKA code. Concerning the amount of outgoing helium ions, significant differences of 3-15% were found between experiments and simulations. We conclude that if PMMA is used in place of water in dosimetry, differences in the dose distributions could arise close to the edges of the field, in particular for deep seated targets.

摘要

目前,氦离子束在放射治疗中的应用正受到越来越多的关注。为了对治疗计划中使用的物理束模型进行基准测试,需要有关混合离子场组成和空间分布的实验数据。特别令人感兴趣的是初级氦离子注量的衰减以及由于核相互作用导致的次级氢离子的积累。这项工作的目的是提供具有更高精度的此类数据。此外,还研究了水和聚甲基丙烯酸甲酯(PMMA)靶之间混合离子场等效性的有效性和局限性。在德国海德堡离子束治疗中心,使用220.5 MeV/u的氦离子笔形束进行了实验。用于离子跟踪和识别的紧凑型检测系统仅基于Timepix位置敏感半导体探测器。与标准技术相比,该系统体积小两个数量级,并提供更高的精度和灵活性。在水等效厚度(WET)为5.2 - 18 cm的水和PMMA靶后方的正向方向上,定量研究了每个初级氦离子出射的氦离子和氢离子数量以及横向粒子分布。比较具有相同WET的水和PMMA靶,我们发现当靶厚度超过10 cm WET时,出射的氦离子和氢离子数量以及横向粒子分布存在显著差异。使用FLUKA代码进行的蒙特卡罗模拟相当好地再现了关于从靶中出现的氢离子的实验结果。关于出射氦离子的数量,实验和模拟之间发现了3% - 15%的显著差异。我们得出结论,如果在剂量测定中使用PMMA代替水,剂量分布可能在靠近射野边缘处出现差异,特别是对于深部靶区。

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