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一种用于治疗结膜肿瘤的新型 3D 打印近距离放射治疗施源器和蒙特卡罗模型。

A novel 3D-printed brachytherapy applicator and Monte Carlo model for the treatment of conjunctival tumors.

机构信息

Department of Radiation Oncology, University of Michigan, Ann Arbor, MI.

Department of Radiation Oncology, University of Michigan, Ann Arbor, MI.

出版信息

Brachytherapy. 2024 Nov-Dec;23(6):712-718. doi: 10.1016/j.brachy.2024.07.004. Epub 2024 Aug 23.

Abstract

PURPOSE

To develop a custom low dose rate brachytherapy applicator for the treatment of conjunctival malignancies which leverages 3D-printing technology to provide enhanced design flexibility and availability.

METHODS

An elliptical shell applicator inspired by ocular surgery postoperation conformer shells was developed for the placement of the applicator around the cornea of the eye, with a central hole to provide patient comfort. The applicator featured 2 concentric circles of slots for iodine-125 seeds, providing customization of the dose distribution depending on the location of the target. The applicator was modeled using computer-aided design software. The resultant model STL file was used for 3D printing of the applicator and the development of a Monte Carlo model of the applicator and its dose distribution.

RESULTS

The applicator was successfully 3D printed using biocompatible resin, which could be sterilized for treatment after manual source loading. A Geant4 model of the applicator was created directly from the STL model and was applied to a phantom to estimate the dose distribution delivered by the applicator. The toroidal dose distribution allowed for treatment of the conjunctiva while reducing dose to the cornea compared to traditional eye plaque designs.

CONCLUSIONS

A custom 3D-printed applicator was successfully developed and modeled for the treatment of conjunctival malignancies. This novel applicator design potentially provides higher quality, more customizable dose distributions for patients and the simplicity of the design makes it accessible for any clinic with 3D-printing technology.

摘要

目的

开发一种定制的低剂量率近距离放射治疗施源器,用于治疗结膜恶性肿瘤,该施源器利用 3D 打印技术提供增强的设计灵活性和可用性。

方法

受眼部手术后的巩膜成形器的启发,设计了一种用于放置在眼球周围的椭圆形壳施源器,其中心有一个孔以提供患者的舒适度。该施源器有 2 个同心环的插槽,用于碘-125 种子,可根据目标位置定制剂量分布。使用计算机辅助设计软件对施源器进行建模。所得模型的 STL 文件用于施源器的 3D 打印以及施源器及其剂量分布的蒙特卡罗模型的开发。

结果

成功使用生物相容性树脂 3D 打印了施源器,可在手动加载源后进行治疗消毒。直接从 STL 模型创建了施源器的 Geant4 模型,并将其应用于体模以估计施源器所提供的剂量分布。与传统的眼贴设计相比,该环形剂量分布允许治疗结膜,同时减少对角膜的剂量。

结论

成功开发并建模了一种用于治疗结膜恶性肿瘤的定制 3D 打印施源器。这种新颖的施源器设计可能为患者提供更高质量、更可定制的剂量分布,并且其设计的简单性使其可用于任何拥有 3D 打印技术的诊所。

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