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Integration and evaluation of automated Monte Carlo simulations in the clinical practice of scanned proton and carbon ion beam therapy

机译:扫描质子和碳离子束治疗临床实践中自动蒙特卡罗模拟的集成与评价

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摘要

Monte Carlo (MC) simulations of beam interaction and transport in matter are increasingly considered as essential tools to support several aspects of radiation therapy. Despite the vast application of MC to photon therapy and scattered proton therapy, clinical experience in scanned ion beam therapy is still scarce. This is especially the case for ions heavier than protons, which pose additional issues like nuclear fragmentation and varying biological effectiveness. In this work, we present the evaluation of a dedicated framework which has been developed at the Heidelberg Ion Beam Therapy Center to provide automated FLUKA MC simulations of clinical patient treatments with scanned proton and carbon ion beams. Investigations on the number of transported primaries and the dimension of the geometry and scoring grids have been performed for a representative class of patient cases in order to provide recommendations on the simulation settings, showing that recommendations derived from the experience in proton therapy cannot be directly translated to the case of carbon ion beams. The MC results with the optimized settings have been compared to the calculations of the analytical treatment planning system (TPS), showing that regardless of the consistency of the two systems (in terms of beam model in water and range calculation in different materials) relevant differences can be found in dosimetric quantities and range, especially in the case of heterogeneous and deep seated treatment sites depending on the ion beam species and energies, homogeneity of the traversed tissue and size of the treated volume. The analysis of typical TPS speed-up approximations highlighted effects which deserve accurate treatment, in contrast to adequate beam model simplifications for scanned ion beam therapy. In terms of biological dose calculations, the investigation of the mixed field components in realistic anatomical situations confirmed the findings of previous groups so far reported only in homogenous water targets. This work can thus be useful to other centers commencing clinical experience in scanned ion beam therapy.
机译:Monte Carlo(MC)模拟光束相互作用和交通的仿真越来越多地被视为支持放射治疗的若干方面的基本工具。尽管MC适用于光子治疗和分散的质子疗法,但扫描离子束治疗的临床经验仍然稀缺​​。这尤其是离子比质子重的尤其如此,这造成了核碎片破碎和不同的生物效果等额外问题。在这项工作中,我们介绍了在海德堡离子束治疗中心开发的专用框架的评价,以提供扫描质子和碳离子束的临床患者治疗的自动化侥幸MC模拟。对运输原初级和几何和评分网格的尺寸的调查已经为代表性的患者案例进行了对仿真案例进行了执行,以便在模拟设置上提供建议,表明无法直接翻译从质子疗法的经验的建议到碳离子束的情况下。使用优化设置的MC结果与分析治疗计划系统(TPS)的计算进行了比较,表明无论两种系统的一致性如何(在水的水平和不同材料的水分和范围计算中的光束模型方面)相关差异可以在剂量测量和范围内发现,特别是在异构和深的坐姿的情况下,取决于离子束物质和能量,横穿组织的均匀性和处理的体积的尺寸。典型TPS加速近似的分析突出显示了应得精确处理的效果,与扫描离子束治疗的适当光束模型简化相比。就生物剂量计算而言,现实解剖情况中混合现场成分的调查证实到目前为止仅在均质水目标中报告的先前群体的结果。因此,这项工作对于在扫描离子束治疗中开始临床经验的其他中心有用。

著录项

  • 来源
    《Physics in medicine and biology.》 |2014年第16期|共25页
  • 作者单位

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Department of;

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Department of;

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Centro Nazionale;

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Department of;

    Department of Radiation Oncology Heidelberg University Clinic Im Neuenheimer Feld 400 Heidelberg;

    Department of Radiation Oncology Heidelberg University Clinic Im Neuenheimer Feld 400 Heidelberg;

    Ludwig Maximilians University Munich Department of Medical Physics Munich Germany;

    Ludwig Maximilians University Munich Department of Medical Physics Munich Germany;

    Department of Radiation Oncology Heidelberg University Clinic Im Neuenheimer Feld 400 Heidelberg;

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Department of;

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Department of;

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Department of;

    Heidelberg Ion Beam Therapy Center Im Neuenheimer Feld 450 Heidelberg Germany Department of;

    Department of Radiation Oncology Heidelberg University Clinic Im Neuenheimer Feld 400 Heidelberg;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 R35;
  • 关键词

    absorbed dose; biological dose; ion beam therapy; Monte Carlo; treatment planning;

    机译:吸收剂量;生物剂量;离子束治疗;蒙特卡洛;治疗计划;

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