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Fast optimization and dose calculation in scanned ion beam therapy

机译:扫描离子束治疗中的快速优化和剂量计算

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Purpose: Particle therapy (PT) has advantages over photon irradiation on static tumors. An increased biological effectiveness and active target conformal dose shaping are strong arguments for PT. However, the sensitivity to changes of internal geometry complicates the use of PT for moving organs. In case of interfractionally moving objects adaptive radiotherapy (ART) concepts known from intensity modulated radiotherapy (IMRT) can be adopted for PT treatments. One ART strategy is to optimize a new treatment plan based on daily image data directly before a radiation fraction is delivered [treatment replanning (TRP)]. Optimizing treatment plans for PT using a scanned beam is a time consuming problem especially for particles other than protons where the biological effective dose has to be calculated. For the purpose of TRP, fast optimization and fast dose calculation have been implemented into the GSI in-house treatment planning system (TPS) TRiP98.Methods: This work reports about the outcome of a code analysis that resulted in optimization of the calculation processes as well as implementation of routines supporting parallel execution of the code. To benchmark the new features, the calculation time for therapy treatment planning has been studied. Results: Compared to the original version of the TPS, calculation times for treatment planning (optimization and dose calculation) have been improved by a factor of 10 with code optimization. The parallelization of the TPS resulted in a speedup factor of 12 and 5.5 for the original version and the code optimized version, respectively. Hence the total speedup of the new implementation of the authors' TPS yielded speedup factors up to 55.Conclusions: The improved TPS is capable of completing treatment planning for ion beam therapy of a prostate irradiation considering organs at risk in this has been overseen in the review process. Also see below 6 min.
机译:目的:粒子疗法(PT)优于静态肿瘤的光子照射。增强的生物学有效性和有效的靶标适形剂量塑形是PT的有力论据。但是,对内部几何形状变化的敏感性使PT用于移动器官变得复杂。对于间质性移动物体,可以采用从强度调制放射治疗(IMRT)中获知的自适应放射治疗(ART)概念进行PT治疗。一种抗逆转录病毒治疗策略是直接在每日提供辐射分数之前根据每日图像数据优化新的治疗计划[治疗重新计划(TRP)]。使用扫描束优化PT的治疗计划是一个耗时的问题,尤其是对于质子以外的其他颗粒,必须计算生物学有效剂量。出于TRP的目的,已在GSI内部治疗计划系统(TPS)TRiP98中实现了快速优化和快速剂量计算。以及支持并行执行代码的例程的实现。为了对这些新功能进行基准测试,已经研究了治疗计划的计算时间。结果:与TPS的原始版本相比,通过代码优化,治疗计划的计算时间(优化和剂量计算)缩短了10倍。 TPS的并行化导致原始版本和代码优化版本的加速因子分别为12和5.5。因此,作者TPS新实施的总加速产生了高达55的加速因子。结论:考虑到有此风险的器官,改进的TPS能够完成前列腺放射线离子束治疗的治疗计划。审核过程。另请参阅下面的6分钟。

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