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Bridging the gap between IMRT and VMAT: Dense angularly sampled and sparse intensity modulated radiation therapy

机译:缩小IMRT与VMAT之间的差距:密集的角度采样和稀疏强度调制放射治疗

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摘要

>Purpose: To propose an alternative radiation therapy (RT) planning and delivery scheme with optimal angular beam sampling and intrabeam modulation for improved dose distribution while maintaining high delivery efficiency.>Methods: In the proposed approach, coined as dense angularly sampled and sparse intensity modulated RT (DASSIM-RT), a large number of beam angles are used to increase the angular sampling, leading to potentially more conformal dose distributions as compared to conventional IMRT. At the same time, intensity modulation of the incident beams is simplified to eliminate the dispensable segments, compensating the increase in delivery time caused by the increased number of beams and facilitating the plan delivery. In a sense, the proposed approach shifts and transforms, in an optimal fashion, some of the beam segments in conventional IMRT to the added beams. For newly available digital accelerators, the DASSIM-RT delivery can be made very efficient by concatenating the beams so that they can be delivered sequentially without operator’s intervention. Different from VMAT, the level of intensity modulation in DASSIS-RT is field specific and optimized to meet the need of each beam direction. Three clinical cases (a head and neck (HN) case, a pancreas case, and a lung case) are used to evaluate the proposed RT scheme. DASSIM-RT, VMAT, and conventional IMRT plans are compared quantitatively in terms of the conformality index (CI) and delivery efficiency.>Results: Plan quality improves generally with the number and intensity modulation of the incident beams. For a fixed number of beams or fixed level of intensity modulation, the improvement saturates after the intensity modulation or number of beams reaches to a certain level. An interplay between the two variables is observed and the saturation point depends on the values of both variables. For all the cases studied here, the CI of DASSIM-RT with 15 beams and 5 intensity levels (0.90, 0.79, and 0.84 for the HN, pancreas, and lung cases, respectively) is similar with that of conventional IMRT with seven beams and ten intensity levels (0.88, 0.79, and 0.83) and is higher than that of single-arc VMAT (0.75, 0.75, and 0.82). It is also found that the DASSIM-RT plans generally have better sparing of organs-at-risk than IMRT plans. It is estimated that the dose delivery time of DASSIM-RT with 15 beams and 5 intensity levels is about 4.5, 4.4, and 4.2 min for the HN, pancreas, and lung case, respectively, similar to that of IMRT plans with 7 beams and 10 intensity levels.>Conclusion: DASSIS-RT bridges the gap between IMRT and VMAT and allows optimal sampling of angular space and intrabeam modulation, thus it provides improved conformity in dose distributions while maintaining high delivery efficiency.
机译:>目的:提出一种替代性放射治疗(RT)规划和传输方案,该方案具有最佳的角波束采样和光束内调制,以改善剂量分布,同时保持较高的传输效率。>方法:提议的方法被称为密集的角度采样和稀疏强度调制RT(DASSIM-RT),使用大量的光束角来增加角度采样,与传统的IMRT相比,可能导致更多的共形剂量分布。同时,简化了入射光束的强度调制,以消除可有可无的部分,从而补偿了由于光束数量增加而导致的交货时间的增加,并有利于计划交货。从某种意义上说,所提出的方法以最佳方式将常规IMRT中的某些光束分段转换为所添加的光束。对于新推出的数字加速器,通过将光束连接起来,可以使DASSIM-RT的交付效率非常高,从而可以按顺序交付光束,而无需操作员干预。与VMAT有所不同,DASSIS-RT中的强度调制级别是特定于场的,并已优化以满足每个光束方向的需求。三个临床病例(头颈部(HN)病例,胰腺病例和肺部病例)用于评估建议的放疗方案。对DASSIM-RT,VMAT和常规IMRT计划在保形指数(CI)和交付效率方面进行了定量比较。>结果:计划质量通常随入射光束的数量和强度调制而提高。对于固定数量的光束或固定水平的强度调制,在强度调制或光束数量达到一定水平后,改进会饱和。观察到两个变量之间存在相互作用,饱和点取决于两个变量的值。对于此处研究的所有病例,DASSIM-RT的CI分别为15束和5强度水平(HN,胰腺和肺部病例的CI分别为0.90、0.79和0.84)与常规IMRT的七束和十个强度级别(0.88、0.79和0.83),并且高于单弧VMAT的强度级别(0.75、0.75和0.82)。还发现,与IMRT计划相比,DASSIM-RT计划通常具有更好的风险器官保留。据估计,对于HN,胰腺和肺部病例,DASSIM-RT的15束和5强度水平的剂量递送时间分别约为4.5、4.4和4.2分钟,类似于IMRT计划的7束和5束剂量。 10个强度级别。>结论:DASSIS-RT弥补了IMRT和VMAT之间的差距,并允许对角度空间和光束内调制进行最佳采样,从而在保持高传输效率的同时提高了剂量分布的一致性。

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