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使用蒙特卡罗方法和测量评估小儿患者放射治疗中的场外剂量。

Assessment of out-of-field doses in radiotherapy treatments of paediatric patients using Monte Carlo methods and measurements.

机构信息

Centro de Ciências e Tecnologias Nucleares, Instituto Superior Técnico, Campus Tecnológico e Nuclear, Estrada Nacional 10, km 139,7, 2695-066 Bobadela LRS, Portugal; Universidade de Lisboa, Faculdade de Ciências, Instituto de Biofísica e Engenharia Biomédica, Campo Grande, Lisboa 1749-016, Portugal; Escola Superior de Tecnologia da Saúde de Lisboa - Instituto Politécnico de Lisboa, Av. D. João II, lote 4.69.01, Lisboa 1990-096, Portugal; Escola Superior de Saúde Drº Lopes Dias - Instituto Politécnico de Castelo Branco, Campus da Talagueira, Avenida do Empresário, Castelo Branco 6000-767, Portugal.

Serviço de Radioterapia, Instituto Português de Oncologia de Lisboa Francisco Gentil, R. Prof° Lima Basto, 1099-023 Lisboa, Portugal.

出版信息

Phys Med. 2020 Mar;71:53-61. doi: 10.1016/j.ejmp.2020.02.008. Epub 2020 Feb 20.

Abstract

PURPOSE

To assess out-of-field doses in radiotherapy treatments of paediatric patients, using Monte Carlo methods to implement a new model of the linear accelerator validated against measurements and developing a voxelized anthropomorphic paediatric phantom.

METHODS

CT images of a physical anthropomorphic paediatric phantom were acquired and a dosimetric planning using a TPS was obtained. The CT images were used to perform the voxelization of the physical phantom using the ImageJ software and later implemented in MCNP. In order to validate the Monte Carlo model, dose measurements of the 6 MV beam and Linac with 120 MLC were made in a clinical setting, using ionization chambers and a water phantom. Afterwards TLD measurements in the physical anthropomorphic phantom were performed in order to assess the out-of-field doses in the eyes, thyroid, c-spine, heart and lungs.

RESULTS

The Monte Carlo model was validated for in-field and out-of-field doses with average relative differences below 3%. The average relative differences between TLD measurements and Monte Carlo is 14,3% whilst the average relative differences between TLD and TPS is 55,8%. Moreover, organs up to 22.5 cm from PTV center show TLD and MCNP6 relative differences and TLD and TPS relative differences up to 21.2% and 92.0%, respectively.

CONCLUSIONS

Our study provides a novel model that could be used in clinical research, namely in dose evaluation outside the treatment fields. This is particularly relevant, especially in pediatric patients, for studying new radiotherapy treatment techniques, since it can be used to estimate the development of secondary tumours.

摘要

目的

使用蒙特卡罗方法评估儿科患者放射治疗的场外剂量,实现经过测量验证的新直线加速器模型,并开发体素化人体儿科模型。

方法

获取物理人体儿科模型的 CT 图像,并使用 TPS 进行剂量规划。使用 ImageJ 软件对物理模型进行 CT 图像体素化,然后将其实现于 MCNP 中。为了验证蒙特卡罗模型,在临床环境中对 6 MV 射束和具有 120 个 MLC 的直线加速器进行了剂量测量,使用电离室和水模。之后,在物理人体儿科模型中进行 TLD 测量,以评估眼睛、甲状腺、颈椎、心脏和肺部的场外剂量。

结果

该蒙特卡罗模型在射野内和射野外剂量的验证中,平均相对差异低于 3%。TLD 测量与蒙特卡罗之间的平均相对差异为 14.3%,而 TLD 与 TPS 之间的平均相对差异为 55.8%。此外,在距 PTV 中心 22.5 厘米范围内的器官,TLD 和 MCNP6 之间以及 TLD 和 TPS 之间的相对差异分别高达 21.2%和 92.0%。

结论

我们的研究提供了一种新的模型,可用于临床研究,特别是在治疗场外剂量评估方面。这在儿科患者中尤其重要,可用于研究新的放射治疗技术,因为它可以用于估计继发性肿瘤的发展。

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