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Fast robust dose calculation on GPU for high-precision 1 H, 4 He, 12 C and 16 O ion therapy: the FRoG platform

机译:FRoG平台可在GPU上进行快速强大的剂量计算,以实现高精度1 H,4 He,12 C和16 O离子治疗

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Radiotherapy with protons and heavier ions landmarks a novel era in the field of high-precision cancer therapy. To identify patients most benefiting from this technologically demanding therapy, fast assessment of comparative treatment plans utilizing different ion species is urgently needed. Moreover, to overcome uncertainties of actual in-vivo physical dose distribution and biological effects elicited by different radiation qualities, development of a reliable high-throughput algorithm is required. To this end, we engineered a unique graphics processing unit (GPU) based software architecture allowing rapid and robust dose calculation. FRoG, Fast Recalculation on GPU, currently operates with four particle beams available at Heidelberg Ion Beam Therapy center, i.e., raster-scanning proton (1H), helium (4He), carbon (12C) and oxygen ions (16O). FRoG enables comparative analysis of different models for estimation of physical and biological effective dose in 3D within minutes and in excellent agreement with the gold standard Monte Carlo (MC) simulation. This is a crucial step towards development of next-generation patient specific radiotherapy.
机译:质子和重离子的放射疗法标志着高精度癌症治疗领域的一个新时代。为了确定最受益于这种技术要求高的疗法的患者,迫切需要对使用不同离子种类的比较治疗方案进行快速评估。而且,为了克服实际体内物理剂量分布和不同辐射质量引起的生物学效应的不确定性,需要开发可靠的高通量算法。为此,我们设计了基于独特图形处理单元(GPU)的软件体系结构,从而可以进行快速,强大的剂量计算。 FRoG是GPU上的快速重新计算,目前可在海德堡离子束治疗中心使用四种粒子束运行,即光栅扫描质子(1H),氦气(4He),碳(12C)和氧离子(16O)。 FRoG使得能够在数分钟内以3D方式对不同模型进行比较分析,以估算3D的物理和生物有效剂量,并且与黄金标准的Monte Carlo(MC)模拟极为吻合。这是发展下一代患者特异性放射疗法的关键一步。

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