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Sensitivity analysis of physics and planning SmartArc parameters for single and partial arc VMAT planning

机译:用于单弧和部分弧VMAT规划的物理和规划SmartArc参数的敏感性分析

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摘要

We investigate the sensitivity of various physics and planning SmartArc parameters to generate single and partial arc VMAT plans with equivalent or better plan quality as IMRT. Patients previously treated with step‐and‐shoot IMRT for several treatment sites were replanned using SmartArc. These treatment sites included head and neck, prostate, lung, and spine. Effect of various physics and planning SmartArc parameters, such as continuous vs. binned dose rate, dynamic leaf gap, leaf speed, maximum delivery time, number of arcs, and control point spacing, were investigated for Elekta Axesse and Synergy linacs. Absolute dose distribution was measured by using the ArcCHECK 3D cylindrical diode array. For all cases investigated, plan metrics such as conformity indices and dose homogeneity indices increased, while plan QA decreased with increasing leaf speed. Leaf speed had a significant impact on the segment size for low dose per fractionation cases. Constraining leaf motion to a lower speed not only avoids tiny large leaf travel and low‐dose rate value, but also achieves better PTV coverage (defined as the volume receiving prescription dose) with less total MUs. Maximum delivery time, the number of arcs, and the spacing of control points all had similar effects as the leaf motion constraint on dose rate and segment size. The maximum delivery time had a significant effect on the optimization, acting as a hard constraint. Increasing the control point spacing from 2 to 6 degrees increased the PTV coverage, but reduced the absolute dose gamma passing rate. Plans generated using continuous and binned dose rate modes did not show any difference in the quality and the delivery for the Elekta machines. Dosimetric analysis with a 3D cylindrical QA phantom resulted in 93.6%–99.3% of detectors with a gamma index 3%/2 mm   1 for all cases.PACS number: 80
机译:我们研究了各种物理方法的敏感性,并计划了SmartArc参数以生成与IMRT等效或更好的计划质量的单弧和部分弧VMAT计划。使用SmartArc重新计划了先前在多个治疗部位接受即时IMRT治疗的患者。这些治疗部位包括头和颈部,前列腺,肺和脊柱。对于Elekta Axesse和Synergy直线加速器,研究了各种物理方法和计划的SmartArc参数的影响,例如连续剂量与​​装料剂量率,动态叶间隙,叶速度,最大传递时间,弧数和控制点间距。通过使用ArcCHECK 3D圆柱二极管阵列测量绝对剂量分布。对于所有调查的案例,计划指标(如合格指数和剂量均一性指数)都会增加,而计划质量检查会随着叶速的增加而降低。对于低分次剂量情况,叶速度对节段大小有重大影响。将叶片运动限制为较低的速度,不仅避免了微小的叶片运动和低剂量率值,而且还以较少的总MU达到了更好的PTV覆盖率(定义为接受处方剂量)。最大输送时间,弧数和控制点间距都与叶片运动对剂量率和段大小的约束有相似的影响。最大交付时间对优化有重大影响,这是硬约束。将控制点间距从2度增加到6度可以增加PTV的覆盖范围,但会降低绝对剂量的伽玛通过率。使用连续和分装剂量率模式生成的计划在Elekta机器的质量和交付方面未显示任何差异。在所有情况下,使用3D圆柱QA体模进行剂量分析,导致93.6%–99.3%的探测器的伽玛系数为3%/ 2 mm <1.PACS数:80

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