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首页> 外文期刊>Medical Physics >Influence of robust optimization in intensity-modulated proton therapy with different dose delivery techniques
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Influence of robust optimization in intensity-modulated proton therapy with different dose delivery techniques

机译:鲁棒优化对不同剂量给药技术对强度调节质子治疗的影响

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摘要

Purpose: The distal edge tracking (DET) technique in intensity-modulated proton therapy (IMPT) allows for high energy efficiency, fast and simple delivery, and simple inverse treatment planning; however, it is highly sensitive to uncertainties. In this study, the authors explored the application of DET in IMPT (IMPT-DET) and conducted robust optimization of IMPT-DET to see if the planning technique's sensitivity to uncertainties was reduced. They also compared conventional and robust optimization of IMPT-DET with three-dimensional IMPT (IMPT-3D) to gain understanding about how plan robustness is achieved. Methods: They compared the robustness of IMPT-DET and IMPT-3D plans to uncertainties by analyzing plans created for a typical prostate cancer case and a base of skull (BOS) cancer case (using data for patients who had undergone proton therapy at our institution). Spots with the highest and second highest energy layers were chosen so that the Bragg peak would be at the distal edge of the targets in IMPT-DET using 36 equally spaced angle beams; in IMPT-3D, 3 beams with angles chosen by a beam angle optimization algorithm were planned. Dose contributions for a number of range and setup uncertainties were calculated, and a worst-case robust optimization was performed. A robust quantification technique was used to evaluate the plans' sensitivity to uncertainties. Results: With no uncertainties considered, the DET is less robust to uncertainties than is the 3D method but offers better normal tissue protection. With robust optimization to account for range and setup uncertainties, robust optimization can improve the robustness of IMPT plans to uncertainties; however, our findings show the extent of improvement varies. Conclusions: IMPT's sensitivity to uncertainties can be improved by using robust optimization. They found two possible mechanisms that made improvements possible: (1) a localized single-field uniform dose distribution (LSFUD) mechanism, in which the optimization algorithm attempts to produce a single-field uniform dose distribution while minimizing the patching field as much as possible; and (2) perturbed dose distribution, which follows the change in anatomical geometry. Multiple-instance optimization has more knowledge of the influence matrices; this greater knowledge improves IMPT plans' ability to retain robustness despite the presence of uncertainties.
机译:目的:强度调制质子治疗(IMPT)中的远端边缘跟踪(DET)技术可实现高能效,快速简便的输送以及简单的逆治疗计划;但是,它对不确定性高度敏感。在这项研究中,作者探索了DET在IMPT(IMPT-DET)中的应用,并对IMPT-DET进行了稳健的优化,以查看规划技术对不确定性的敏感性是否降低。他们还将IMPT-DET的常规和鲁棒性优化与三维IMPT(IMPT-3D)进行了比较,以了解如何实现计划的鲁棒性。方法:他们通过分析针对典型前列腺癌病例和颅骨癌病例的计划(使用在我们机构接受质子治疗的患者的数据),将IMPT-DET和IMPT-3D计划的鲁棒性与不确定性进行了比较)。选择具有最高和第二高能量层的光斑,以便使用36个等距角光束将布拉格峰定位在IMPT-DET中目标的远侧边缘。在IMPT-3D中,计划了由光束角度优化算法选择的3个光束。计算了许多范围和设置不确定性的剂量贡献,并进行了最坏情况的鲁棒优化。强大的量化技术用于评估计划对不确定性的敏感性。结果:不考虑不确定因素,DET对不确定因素的抵抗力不及3D方法强,但可提供更好的正常组织保护。通过鲁棒性优化解决范围和设置的不确定性,鲁棒性优化可以提高IMPT计划对不确定性的鲁棒性。但是,我们的发现表明改善的程度各不相同。结论:IMPT对不确定性的敏感性可以通过使用鲁棒优化来提高。他们发现了两种可能使改进成为可能的机制:(1)局部单场均匀剂量分布(LSFUD)机制,其中优化算法尝试产生单场均匀剂量分布,同时尽可能减小修补场; (2)扰动的剂量分布,它随解剖结构的变化而变化。多实例优化对影响矩阵有更多的了解;尽管存在不确定性,但掌握的这些知识可以提高IMPT计划保持鲁棒性的能力。

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