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Potential for Improvements in Robustness and Optimality of Intensity-Modulated Proton Therapy for Lung Cancer with 4-Dimensional Robust Optimization

机译:具有4维稳健优化的肺癌强度调节质子治疗的稳健性和最优性提高的潜力

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摘要

Background: Major challenges in the application of intensity-modulated proton therapy (IMPT) for lung cancer patients include the uncertainties associated with breathing motion, its mitigation and its consideration in IMPT optimization. The primary objective of this research was to evaluate the potential of four-dimensional robust optimization (4DRO) methodology to make IMPT dose distributions resilient to respiratory motion as well as to setup and range uncertainties; Methods: The effect of respiratory motion, characterized by different phases of 4D computed tomography (4DCT), was incorporated into an in-house 4DRO system. Dose distributions from multiple setup and range uncertainty scenarios were calculated for each of the ten phases of CT datasets. The 4DRO algorithm optimizes dose distributions to achieve target dose coverage and normal tissue sparing for multiple setup and range uncertainty scenarios as well as for all ten respiratory phases simultaneously. IMPT dose distributions of ten lung cancer patients with different tumor sizes and motion magnitudes were optimized to illustrate our approach and its potential; Results: Compared with treatment plans generated using the conventional planning target volume (PTV)-based optimization and 3D robust optimization (3DRO), plans generated by 4DRO were found to have superior clinical target volume coverage and dose robustness in the face of setup and range uncertainties as well as for respiratory motion. In most of the cases we studied, 4DRO also resulted in more homogeneous target dose distributions. Interestingly, such improvements were found even for cases in which moving diaphragms intruded into the proton beam paths; Conclusion: The incorporation of respiratory motion, along with setup and range uncertainties, into robust optimization, has the potential to improve the resilience of target and normal tissue dose distributions in IMPT plans in the face of the uncertainties considered. Moreover, it improves the optimality of plans compared to PTV-based optimization as well as 3DRO.
机译:背景:在肺癌患者中应用强度调节质子治疗(IMPT)的主要挑战包括与呼吸运动有关的不确定性,缓解措施及其在IMPT优化中的考虑。这项研究的主要目的是评估四维鲁棒优化(4DRO)方法的潜力,以使IMPT剂量分布可适应呼吸运动以及建立和确定范围不确定性。方法:将呼吸运动的效果(以4D计算机断层扫描(4DCT)的不同阶段为特征)整合到内部4DRO系统中。针对CT数据集的十个阶段中的每个阶段,计算了来自多个设置和范围不确定性场景的剂量分布。 4DRO算法针对多个设置和范围不确定性场景以及所有十个呼吸阶段同时优化剂量分布,以实现目标剂量覆盖范围和正常组织备用。优化了十个具有不同肿瘤大小和运动幅度的肺癌患者的IMPT剂量分布,以说明我们的方法及其潜力。结果:与使用基于常规计划目标体积(PTV)的优化和3D鲁棒性优化(3DRO)生成的治疗方案相比,通过4DRO生成的方案在设置和范围方面具有更高的临床目标体积覆盖率和剂量稳定性不确定性以及呼吸运动。在我们研究的大多数情况下,4DRO还导致更均匀的目标剂量分布。有趣的是,即使在移动的光阑侵入质子束路径的情况下,也发现了这种改进。结论:在考虑到不确定性的情况下,将呼吸运动以及设置和范围的不确定性纳入鲁棒性优化中,有可能提高IMPT计划中靶标和正常组织剂量分布的弹性。而且,与基于PTV的优化以及3DRO相比,它提高了计划的最优性。

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