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头颈部放疗中个体化 3D 打印口腔定位支架的剂量学评估。

Dosimetric evaluation of a patient-specific 3D-printed oral positioning stent for head-and-neck radiotherapy.

机构信息

Royal Brisbane and Women's Hospital, Herston, QLD, 4029, Australia.

Queensland University of Technology, Brisbane, QLD, 4001, Australia.

出版信息

Phys Eng Sci Med. 2021 Sep;44(3):887-899. doi: 10.1007/s13246-021-01025-y. Epub 2021 Jun 10.

Abstract

As head-and-neck radiotherapy treatments become more complex and sophisticated, and the need to control and stabilise the positioning of intra-oral anatomy becomes more important, leading the increasing use of oral positioning stents during head-and-neck radiotherapy simulation and delivery. As an alternative to the established practice of creating oral positioning stents using wax, this study investigated the use of a 3D printing technique. An Ender 5 3D printer (Creality 3D, Shenzhen, China) was used, with PLA+ "food-safe" polylactic acid filament (3D Fillies, Dandenong South, Australia), to produce a low-density 3D printed duplicate of a conventional wax stent. The physical and dosimetric effects of the two stents were evaluated using radiochromic film in a solid head phantom that was modified to include flexible parts. The Varian Eclipse treatment planning system (Varian Medical Systems, Palo Alto, USA) was used to calculate the dose from two different head-and-neck treatment plans for the phantom with each of the two stents. Examination of the resulting four dose distributions showed that both stents effectively pushed sensitive oral tissues away from the treatment targets, even though most of the phantom was solid. Film measurements confirmed the accuracy of the dose calculations from the treatment planning system, despite the steep density gradients in the treated volume, and demonstrated that the 3D print could be a suitable replacement for the wax stent. This study demonstrated a useful method for dosimetrically testing novel oral positioning stents. We recommend the development of flexible phantoms for future studies.

摘要

随着头颈部放射治疗变得更加复杂和精细,以及控制和稳定口腔内解剖结构定位的需求变得更加重要,在头颈部放射治疗模拟和治疗过程中,越来越多地使用口腔定位支架。作为使用蜡制作口腔定位支架的既定实践的替代方法,本研究探讨了使用 3D 打印技术的可能性。使用 Ender 5 3D 打印机(Creality 3D,中国深圳)和 PLA+“食品级”聚乳酸长丝(3D Fillies,澳大利亚丹顿南区),制作了常规蜡支架的低密度 3D 打印复制品。使用放射性铬膜在修改后的固体头部体模中评估了两种支架的物理和剂量学效果,该体模包含了柔性部件。使用瓦里安 Eclipse 治疗计划系统(美国瓦里安医疗系统公司)计算了每个支架的两个体模的两种不同头颈部治疗计划的剂量。对四个剂量分布的研究表明,尽管大部分体模是实心的,但两种支架都有效地将敏感的口腔组织从治疗靶区推开。胶片测量结果证实了治疗计划系统计算的剂量的准确性,尽管在治疗体积中存在陡峭的密度梯度,并且表明 3D 打印可以成为蜡支架的合适替代品。本研究展示了一种用于对新型口腔定位支架进行剂量学测试的有用方法。我们建议为未来的研究开发柔性体模。

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