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基于 MC 的人体模型用于间质内 192Ir HDR 近距离治疗中基于模型的剂量计算的调试。

A MC-based anthropomorphic test case for commissioning model-based dose calculation in interstitial breast 192-Ir HDR brachytherapy.

机构信息

Medical Physics Laboratory, Medical School, National and Kapodistrian University of Athens, Athens, Greece.

Radiotherapy Department, General Hospital of Athens Alexandra, Athens, Greece.

出版信息

Med Phys. 2023 Jul;50(7):4675-4687. doi: 10.1002/mp.16455. Epub 2023 May 17.

Abstract

PURPOSE

To provide the first clinical test case for commissioning of Ir brachytherapy model-based dose calculation algorithms (MBDCAs) according to the AAPM TG-186 report workflow.

ACQUISITION AND VALIDATION METHODS

A computational patient phantom model was generated from a clinical multi-catheter Ir HDR breast brachytherapy case. Regions of interest (ROIs) were contoured and digitized on the patient CT images and the model was written to a series of DICOM CT images using MATLAB. The model was imported into two commercial treatment planning systems (TPSs) currently incorporating an MBDCA. Identical treatment plans were prepared using a generic Ir HDR source and the TG-43-based algorithm of each TPS. This was followed by dose to medium in medium calculations using the MBDCA option of each TPS. Monte Carlo (MC) simulation was performed in the model using three different codes and information parsed from the treatment plan exported in DICOM radiation therapy (RT) format. Results were found to agree within statistical uncertainty and the dataset with the lowest uncertainty was assigned as the reference MC dose distribution.

DATA FORMAT AND USAGE NOTES

The dataset is available online at http://irochouston.mdanderson.org/rpc/BrachySeeds/BrachySeeds/index.html,https://doi.org/10.52519/00005. Files include the treatment plan for each TPS in DICOM RT format, reference MC dose data in RT Dose format, as well as a guide for database users and all files necessary to repeat the MC simulations.

POTENTIAL APPLICATIONS

The dataset facilitates the commissioning of brachytherapy MBDCAs using TPS embedded tools and establishes a methodology for the development of future clinical test cases. It is also useful to non-MBDCA adopters for intercomparing MBDCAs and exploring their benefits and limitations, as well as to brachytherapy researchers in need of a dosimetric and/or a DICOM RT information parsing benchmark. Limitations include specificity in terms of radionuclide, source model, clinical scenario, and MBDCA version used for its preparation.

摘要

目的

根据 AAPM TG-186 报告工作流程,为基于 Ir 近距离治疗模型的剂量计算算法(MBDCA)的委托提供首个临床测试案例。

采集和验证方法

从临床多导管 Ir HDR 乳房近距离治疗病例中生成计算患者体模模型。在患者 CT 图像上勾画感兴趣区域(ROI)并进行数字化,并用 MATLAB 将模型写入一系列 DICOM CT 图像中。将模型导入到目前包含 MBDCA 的两个商业治疗计划系统(TPS)中。使用每个 TPS 的通用 Ir HDR 源和基于 TG-43 的算法准备相同的治疗计划。然后,使用每个 TPS 的 MBDCA 选项进行介质中的介质剂量计算。在模型中使用三种不同的代码和从以 DICOM 放射治疗(RT)格式导出的治疗计划中解析的信息进行 Monte Carlo(MC)模拟。结果在统计不确定性内一致,将不确定性最低的数据集指定为参考 MC 剂量分布。

数据格式和使用说明

该数据集可在以下网址在线获取:http://irochouston.mdanderson.org/rpc/BrachySeeds/BrachySeeds/index.html,https://doi.org/10.52519/00005。文件包括每个 TPS 的 DICOM RT 格式治疗计划、RT Dose 格式的参考 MC 剂量数据,以及数据库用户指南和重复 MC 模拟所需的所有文件。

潜在应用

该数据集可用于使用 TPS 嵌入式工具委托近距离治疗 MBDCA,并为未来临床测试案例的开发建立方法。对于不采用 MBDCA 的人,它也可用于比较 MBDCA 并探索其优缺点,以及对需要剂量学和/或 DICOM RT 信息解析基准的近距离治疗研究人员有用。局限性包括放射性核素、源模型、临床情况和用于准备的 MBDCA 版本的特异性。

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