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改良Ru不对称眼敷贴器的几何形状以改善眼科近距离放射治疗中的剂量计算

Modified Geometry of Ru Asymmetric Eye Plaques to Improve Dosimetric Calculations in Ophthalmic Brachytherapy.

作者信息

Miras Héctor, Terrón José Antonio, Bertolet Alejandro, Leal Antonio

机构信息

Department of Medical Physics, Hospital Universitario Virgen Macarena, E-41009 Seville, Spain.

Instituto de Biomedicina de Sevilla, IBIS, E-41013 Seville, Spain.

出版信息

J Pers Med. 2022 Apr 29;12(5):723. doi: 10.3390/jpm12050723.

Abstract

Ru/Rh asymmetric plaques for ophthalmic brachytherapy have special geometric designs with a cutout intended to prevent irradiation of critical ocular structures proximal to the tumor. In this work, we present new geometric models for PENELOPE+PenEasy Monte Carlo simulations of these applicators, differing from the vendor-reported geometry, that better match their real geometry to assess their dosimetric impact. Simulation results were benchmarked to experimental dosimetric data from radiochromic film measurements, data provided by the manufacturer in the calibration certificates, and other experimental results published in the literature, obtaining, in all cases, better agreement with the modified geometries. The clinical impact of the new geometric models was evaluated by simulating real clinical cases using patient-specific eye models. The cases calculated using the modified geometries presented higher doses to the critical structures proximal to the cutout region. The modified geometric models presented in this work provide a more accurate representation of the asymmetric plaques, greatly improving the agreement between Monte Carlo calculations and experimental measurements. Lack of consideration of accurate geometric models has been shown to be translated into notable increases in dose to organs at risk in clinical cases.

摘要

用于眼科近距离治疗的钌/铑不对称敷贴器具有特殊的几何设计,带有一个切口,旨在防止对肿瘤近端关键眼部结构的照射。在这项工作中,我们提出了用于这些敷贴器的PENELOPE+PenEasy蒙特卡罗模拟的新几何模型,该模型与供应商报告的几何形状不同,能更好地匹配其实际几何形状,以评估其剂量学影响。模拟结果以放射性色胶片测量的实验剂量学数据、制造商在校准证书中提供的数据以及文献中发表的其他实验结果为基准,在所有情况下,与修改后的几何形状都有更好的一致性。通过使用特定患者的眼部模型模拟实际临床病例,评估了新几何模型的临床影响。使用修改后的几何形状计算的病例在切口区域近端的关键结构处呈现出更高的剂量。这项工作中提出的修改后的几何模型能更准确地表示不对称敷贴器,极大地提高了蒙特卡罗计算与实验测量之间的一致性。已表明,在临床病例中,不考虑准确的几何模型会导致对危险器官的剂量显著增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d27/9144752/fb25c27430c6/jpm-12-00723-g001.jpg

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