Comprehensive Study of Lung Cancer Proton Therapy with Injection of GNPs

R. Khoramdel, S. N. Hosseini Motlagh, Z. Parang
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Abstract

The application of radiation therapy (RT) in lung cancer has shown some exciting and sometimes disappointing advances in recent years. Protons compared with photons interact differently with human tissues, and can be used to improve patient care for suffering from lung cancer. A new strategy is the simultaneous injection of nanoparticles with proton radiation into the tumor which has been given over a decade to improve conventional RT. In this work, proton beam therapy (PBT) with gold nanoparticles (GNPs) is used as a part of a combination program to treat advanced localized lung cancers. This paper aims to develop the complex Geant4 model on the human lung and predict the distribution of absorbed dose in lung tumors during proton therapy without and with a high-Z injection of GNPs. Thus, the absorbed dose distribution in lung tumors for four modes such as (i) Bethe-Bloch’s relativistic quantum theory, (ii) GEANT4/ GATE7 simulation model, (iii) Hartree-Fock-Roothaan(HFR) wave functions, and the (vi) Bortfeld theoretical model without and with the injection of GNPs in predicted lung phantom are compared.
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注入 GNP 的肺癌质子疗法综合研究
近年来,放射治疗(RT)在肺癌中的应用取得了一些令人兴奋的进展,有时也令人失望。与光子相比,质子与人体组织的相互作用不同,因此可用于改善肺癌患者的治疗。一种新的策略是将纳米粒子与质子射线同时注入肿瘤,这种方法已经应用了十多年,以改善传统的 RT 治疗。在这项工作中,质子束疗法(PBT)与金纳米粒子(GNPs)被用作治疗晚期局部肺癌的组合方案的一部分。本文的目的是在人体肺部建立复杂的 Geant4 模型,并预测质子治疗过程中不注射和注射高 Z 值金纳米粒子时肺部肿瘤的吸收剂量分布。因此,本文比较了四种模式下肺部肿瘤的吸收剂量分布情况,如:(i) Bethe-Bloch 相对量子理论;(ii) GEANT4/ GATE7 模拟模型;(iii) Hartree-Fock-Roothaan(HFR) 波函数;(vi) Bortfeld 理论模型(在预测的肺部模型中未注入和注入 GNPs)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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