首页> 美国卫生研究院文献>Technology in Cancer Research Treatment >A Beam-Angle-Selection Method to Improve Inter-Fraction Motion Robustness for Lung Tumor Irradiation With Passive Proton Scattering
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A Beam-Angle-Selection Method to Improve Inter-Fraction Motion Robustness for Lung Tumor Irradiation With Passive Proton Scattering

机译:一种梁角度选择方法以改善肺肿瘤照射与无源质子散射的分数间运动鲁棒性

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摘要

In terms of dose distribution, protons are more sensitive to range variations than photons due to their unique properties. The aim of this study was to develop a method to identify patient-specific robust proton beam angles for lung tumor irradiation by investigating the association between water equivalent thickness (WET) variation and inter-fraction motion-induced target dose degradation. Using 3-dimensional computed tomography (3D-CT) images, the impact of WET variations on the target dose coverage of a series of coplanar proton beams was evaluated for 4 patients with lung cancer. Using ray tracing, WET maps, or WET baseline, were estimated for the internal target volume (ITV) at every 5° gantry interval in the axial plane. After calculating the WET baseline, the planning CT was shifted 5 mm in each anterior-posterior (AP), superior-inferior (SI), and left-right (LR) direction, yielding a total of 6 shifted CTs, and differential WET maps between the planning CT and each shifted CT were calculated. Target dose differences were associated with the average WET change between the original planning CT and the shifted CTs for all 360° gantry rotation beams. Target and OAR dose metrics in the ΔWET-guided plans were compared with those of the clinical plans. The WET variation maps showed areas of both high and low WET variations, with overall similar patterns yet individual differences reflecting tumor position differences. For all 4 patients investigated in this study, the coplanar plans demonstrated a strong correlation between WET changes and ITV dose reductions. Target dose coverage was more stable with the ΔWET-guided plan while OAR doses were comparable to the clinical plan. The WET variation maps have been used in this pilot study to identify proton beam angles that are either sensitive or robust to WET changes in proton passive scattering. This work demonstrates the feasibility of using WET variation maps to assist the planner in inter-fraction motion-robust proton beam angle selection.
机译:就剂量分布而言,由于其独特的特性,质子对比光子的范围变化更敏感。该研究的目的是通过研究水当量厚度(湿)变化和帧间运动诱导的靶剂剂量降解,鉴定肺肿瘤辐射的患者特异性鲁棒质子束角的方法。使用三维计算断层扫描(3D-CT)图像,对肺癌4例患者评估了一系列共面质质子束的目标剂量覆盖的湿变化的影响。使用光线跟踪,湿地图或湿基线在轴向平面中的每5°龙门间隔处估计内部目标体积(ITV)。在计算湿基线之后,规划CT在每个前后(AP),优于较低(Si)和左右(LR)方向上偏移5mm,总共6个移位的CTS,差分湿地图计算规划CT和每个偏移的CT之间。目标剂量差异与原始规划CT和所有360°龙门旋转梁之间的偏移CTS之间的平均湿变化相关联。与临床计划的目标进行比较ΔWET引导计划中的目标和OAR剂量指标。湿式变化图显示了高湿变化的区域,具有整体相似的模式然而,各个差异反映了肿瘤位置差异。对于在本研究中调查的所有4名患者,共面计划在潮湿变化和ITV剂量减少之间表现出强烈的相关性。目标剂量覆盖与ΔWET引导的计划更稳定,而OAR剂量与临床计划相当。在该试点研究中使用了湿式变化图以识别质子束角,其对质子被动散射的湿变化是敏感的或鲁棒的。这项工作展示了使用湿式变化图的可行性来帮助帧间帧间运动鲁棒质子束角度选择。

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