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基于几何形状的能量选择的强度调制质子弧形治疗室管膜瘤。

Intensity modulated proton arc therapy via geometry-based energy selection for ependymoma.

机构信息

Department of Radiation Physics, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.

Department of Physics and Astronomy, Rice University, Houston, Texas, USA.

出版信息

J Appl Clin Med Phys. 2023 Jul;24(7):e13954. doi: 10.1002/acm2.13954. Epub 2023 Mar 13.

Abstract

PURPOSE

We developed and tested a novel method of creating intensity modulated proton arc therapy (IMPAT) plans that uses computing resources similar to those for regular intensity-modulated proton therapy (IMPT) plans and may offer a dosimetric benefit for patients with ependymoma or similar tumor geometries.

METHODS

Our IMPAT planning method consists of a geometry-based energy selection step with major scanning spot contributions as inputs computed using ray-tracing and single-Gaussian approximation of lateral spot profiles. Based on the geometric relation of scanning spots and dose voxels, our energy selection module selects a minimum set of energy layers at each gantry angle such that each target voxel is covered by sufficient scanning spots as specified by the planner, with dose contributions above the specified threshold. Finally, IMPAT plans are generated by robustly optimizing scanning spots of the selected energy layers using a commercial proton treatment planning system (TPS). The IMPAT plan quality was assessed for four ependymoma patients. Reference three-field IMPT plans were created with similar planning objective functions and compared with the IMPAT plans.

RESULTS

In all plans, the prescribed dose covered 95% of the clinical target volume (CTV) while maintaining similar maximum doses for the brainstem. While IMPAT and IMPT achieved comparable plan robustness, the IMPAT plans achieved better homogeneity and conformity than the IMPT plans. The IMPAT plans also exhibited higher relative biological effectiveness (RBE) enhancement than did the corresponding reference IMPT plans for the CTV in all four patients and brainstem in three of them.

CONCLUSIONS

The proposed method demonstrated potential as an efficient technique for IMPAT planning and may offer a dosimetric benefit for patients with ependymoma or tumors in close proximity to critical organs. IMPAT plans created using this method had elevated RBE enhancement associated with increased linear energy transfer (LET) in both targets and abutting critical organs.

摘要

目的

我们开发并测试了一种新的强度调制质子弧治疗(IMPAT)计划的方法,该方法使用与常规强度调制质子治疗(IMPT)计划相似的计算资源,并且可能为患有室管膜瘤或类似肿瘤几何形状的患者提供剂量学优势。

方法

我们的 IMPAT 计划方法包括基于几何形状的能量选择步骤,其中主要扫描点贡献作为输入,使用射线追踪和横向点轮廓的单高斯近似来计算。基于扫描点和剂量体素的几何关系,我们的能量选择模块在每个旋转架角度选择一组最小的能量层,使得每个目标体素都被足够的扫描点覆盖,这些扫描点由规划器指定,并且剂量贡献超过指定的阈值。最后,使用商业质子治疗计划系统(TPS)通过稳健地优化所选能量层的扫描点来生成 IMPAT 计划。评估了四个室管膜瘤患者的 IMPAT 计划质量。创建了具有类似计划目标函数的参考三野 IMPT 计划,并与 IMPAT 计划进行了比较。

结果

在所有计划中,规定剂量覆盖了 95%的临床靶体积(CTV),同时保持了对脑干的相似最大剂量。虽然 IMPAT 和 IMPT 实现了类似的计划稳健性,但 IMPAT 计划在均匀性和适形性方面优于 IMPT 计划。在所有四个患者的 CTV 和其中三个患者的脑干中,IMPA 计划也表现出比相应的参考 IMPT 计划更高的相对生物有效性(RBE)增强。

结论

所提出的方法展示了作为 IMPAT 计划的有效技术的潜力,并且可能为患有室管膜瘤或靠近关键器官的肿瘤的患者提供剂量学优势。使用这种方法创建的 IMPAT 计划在靶区和毗邻的关键器官中具有更高的 RBE 增强,与更高的线性能量传递(LET)相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/532d/10338743/d459012d6fa9/ACM2-24-e13954-g005.jpg

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