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一种用于共面等中心光子放射治疗期间外周光子剂量快速三维评估的简单分析模型。

A simple analytical model for a fast 3D assessment of peripheral photon dose during coplanar isocentric photon radiotherapy.

作者信息

Sánchez-Nieto Beatriz, López-Martínez Ignacio N, Rodríguez-Mongua José Luis, Espinoza Ignacio

机构信息

Instituto de Física, Pontificia Universidad Católica de Chile, Santiago, Chile.

Departamento de Radiofísica, Fundación Arturo López Pérez, Santiago, Chile.

出版信息

Front Oncol. 2022 Oct 6;12:872752. doi: 10.3389/fonc.2022.872752. eCollection 2022.

Abstract

Considering that cancer survival rates have been growing and that nearly two-thirds of those survivors were exposed to clinical radiation during its treatment, the study of long-term radiation effects, especially secondary cancer induction, has become increasingly important. To correctly assess this risk, knowing the dose to out-of-field organs is essential. As it has been reported, commercial treatment planning systems do not accurately calculate the dose far away from the border of the field; analytical dose estimation models may help this purpose. In this work, the development and validation of a new three-dimensional (3D) analytical model to assess the photon peripheral dose during radiotherapy is presented. It needs only two treatment-specific input parameter values, plus information about the linac-specific leakage, when available. It is easy to use and generates 3D whole-body dose distributions and, particularly, the dose to out-of-field organs (as dose-volume histograms) outside the 5% isodose for any isocentric treatment using coplanar beams [including intensity modulated radiotherapy and volumetric modulated arc therapy (VMAT)]. The model was configured with the corresponding Monte Carlo simulation of the peripheral absorbed dose for a 6 MV abdomen treatment on the International Comission on Radiological Protection (ICRP) 110 computational phantom. It was then validated with experimental measurements using thermoluminescent dosimeters in the male ATOM anthropomorphic phantom irradiated with a VMAT treatment for prostate cancer. Additionally, its performance was challenged by applying it to a lung radiotherapy treatment very different from the one used for training. The model agreed well with measurements and simulated dose values. A graphical user interface was developed as a first step to making this work more approachable to a daily clinical application.

摘要

鉴于癌症生存率一直在提高,且近三分之二的幸存者在治疗期间接受过临床放疗,对长期辐射效应,尤其是继发性癌症诱发的研究变得越来越重要。为了正确评估这种风险,了解射野外器官所受剂量至关重要。据报道,商业治疗计划系统无法准确计算远离射野边界处的剂量;分析剂量估计模型可能有助于此。在这项工作中,提出了一种新的三维(3D)分析模型的开发与验证,用于评估放射治疗期间的光子周边剂量。它仅需两个特定于治疗的输入参数值,以及直线加速器特定泄漏的信息(若有)。该模型易于使用,可生成3D全身剂量分布,特别是对于使用共面射束的任何等中心治疗(包括调强放疗和容积调强弧形放疗(VMAT)),可生成5%等剂量线外射野外器官的剂量(作为剂量体积直方图)。该模型是根据国际放射防护委员会(ICRP)110计算体模上6MV腹部治疗的周边吸收剂量的相应蒙特卡罗模拟配置的。然后,使用热释光剂量计在接受VMAT前列腺癌治疗照射的男性ATOM人体模型中进行实验测量对其进行验证。此外,通过将其应用于与用于训练的治疗截然不同的肺部放射治疗来检验其性能。该模型与测量值和模拟剂量值吻合良好。作为使这项工作更便于日常临床应用的第一步,开发了一个图形用户界面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1cd/9583866/e3cc5af6e1d3/fonc-12-872752-g001.jpg

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