Design and performance validation of a novel 3d printed thin-walled and transparent electron beam applicators for intraoperative radiation therapy with beam energy up to 12 MeV.

IF 1.2 Q4 ONCOLOGY Reports of Practical Oncology and Radiotherapy Pub Date : 2024-07-22 eCollection Date: 2024-01-01 DOI:10.5603/rpor.101092
Agnieszka Misiarz, Aleksandra Lenartowicz, Przemysław Adrich, Jacek Rzadkiewicz, Sławomir Wronka, Jan Trzuskowski, Marta Kruszyna-Mochalska, Bartosz Urbański, Beata Adamczyk, Jacek Pracz
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Abstract

A high-energy electron accelerator is used in the treatment of patients in the so-called intraoperative electron radiotherapy (IOERT). The work aimed to present the results of the validation of a new design of an electron beam applicator for use in IOERT. A novel solution was described along with the design optimization method based on Monte Carlo simulations. In this solution, the applicator consists of two parts. The lower exchangeable part collimates the therapeutic field. Measurements were made based on the International Electrotechnical Commission (IEC) standard recommendations. The measurement described in the standard has been adapted to the specificity of the intraoperative accelerator Source to Skin Distance - of 60 cm and applicators with a circular cross-sectional area. Measurements were performed for nominal beam energies of 6, 10, and 12 MeV and two therapeutic field diameters of 6 and 10 cm. The dose due to stray X-ray radiation in all energies is less than 0.3% and increases for energies from 6 to 12 MeV by 2.9 times from 0.1 for 6MeV to 0.29 for 12 MeV. The average dose due to leakage radiation also shows an increasing trend and is higher for a 6 cm diameter applicator. Validation confirmed the usefulness of the novel applicator design for clinical applications. Thanks to the use of 3D printing, it was possible to make applicators that are transparent, biocompatible and, at the same time, light and form a beam field with therapeutically useful accuracy, and the leakage radiation does not exceed normative recommendations.

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用于术中放射治疗的新型 3d 打印薄壁透明电子束应用器的设计与性能验证,束流能量高达 12 MeV。
在所谓的术中电子放射治疗(IOERT)中,高能电子加速器被用于治疗病人。这项工作旨在展示用于术中电子放疗的电子束应用器新设计的验证结果。在蒙特卡洛模拟的基础上,介绍了一种新的解决方案和设计优化方法。在该方案中,涂抹器由两部分组成。下部的可交换部分对治疗场进行准直。测量是根据国际电工委员会(IEC)的标准建议进行的。标准中描述的测量方法已根据术中加速器的特殊性进行了调整,即源到皮肤的距离为 60 厘米,涂抹器的横截面积为圆形。测量针对的是 6、10 和 12 MeV 的标称束流能量以及 6 厘米和 10 厘米的两个治疗场直径。在所有能量下,杂散 X 射线辐射造成的剂量都小于 0.3%,而在 6 至 12 MeV 能量下,杂散 X 射线辐射造成的剂量增加了 2.9 倍,从 6 MeV 的 0.1 到 12 MeV 的 0.29。泄漏辐射造成的平均剂量也呈上升趋势,直径为 6 厘米的涂抹器的平均剂量更高。验证证实了新型涂抹器设计在临床应用中的实用性。由于使用了三维打印技术,因此可以制造出透明、生物相容性好的涂抹器,同时还具有轻质、可形成具有治疗作用的精确射束场以及泄漏辐射不超过规范建议的特点。
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来源期刊
CiteScore
2.80
自引率
8.30%
发文量
115
审稿时长
16 weeks
期刊介绍: Reports of Practical Oncology and Radiotherapy is an interdisciplinary bimonthly journal, publishing original contributions in clinical oncology and radiotherapy, as well as in radiotherapy physics, techniques and radiotherapy equipment. Reports of Practical Oncology and Radiotherapy is a journal of the Polish Society of Radiation Oncology, the Czech Society of Radiation Oncology, the Hungarian Society for Radiation Oncology, the Slovenian Society for Radiotherapy and Oncology, the Polish Study Group of Head and Neck Cancer, the Guild of Bulgarian Radiotherapists and the Greater Poland Cancer Centre, affiliated with the Spanish Society of Radiotherapy and Oncology, the Italian Association of Radiotherapy and the Portuguese Society of Radiotherapy - Oncology.
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