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质子微束放射治疗与弧形治疗:成功组合的概念验证

Proton Minibeam Radiation Therapy and Arc Therapy: Proof of Concept of a Winning Alliance.

作者信息

Ortiz Ramon, De Marzi Ludovic, Prezado Yolanda

机构信息

Institut Curie, Université PSL, CNRS UMR3347, Inserm U1021, Signalisation Radiobiologie et Cancer, 91400 Orsay, France.

Université Paris-Saclay, CNRS UMR3347, Inserm U1021, Signalisation Radiobiologie et Cancer, 91400 Orsay, France.

出版信息

Cancers (Basel). 2021 Dec 27;14(1):116. doi: 10.3390/cancers14010116.

Abstract

(1) Background: Proton Arc Therapy and Proton Minibeam Radiation Therapy are two novel therapeutic approaches with the potential to lower the normal tissue complication probability, widening the therapeutic window for radioresistant tumors. While the benefits of both modalities have been individually evaluated, their combination and its potential advantages are being assessed in this proof-of-concept study for the first time. (2) Methods: Monte Carlo simulations were employed to evaluate the dose and LET distributions in brain tumor irradiations. (3) Results: a net reduction in the dose to normal tissues (up to 90%), and the preservation of the spatial fractionation of the dose were achieved for all configurations evaluated. Additionally, Proton Minibeam Arc Therapy (pMBAT) reduces the volumes exposed to high-dose and high-LET values at expense of increased low-dose and intermediate-LET values. (4) Conclusions: pMBAT enhances the individual benefits of proton minibeams while keeping those of conventional proton arc therapy. These results might facilitate the path towards patients' treatments since lower peak doses in normal tissues would be needed than in the case of a single array of proton minibeams.

摘要

(1) 背景:质子弧形疗法和质子微束放射疗法是两种新型治疗方法,有可能降低正常组织并发症概率,拓宽对放射抗拒肿瘤的治疗窗口。虽然这两种治疗方式的益处已分别得到评估,但在本概念验证研究中首次对它们的联合应用及其潜在优势进行评估。(2) 方法:采用蒙特卡罗模拟来评估脑肿瘤照射中的剂量和传能线密度分布。(3) 结果:对于所评估的所有配置,均实现了正常组织剂量的净减少(高达90%),并且保留了剂量的空间分割。此外,质子微束弧形疗法(pMBAT)以增加低剂量和中等传能线密度值为代价,减少了暴露于高剂量和高传能线密度值的体积。(4) 结论:pMBAT增强了质子微束的个体益处,同时保留了传统质子弧形疗法的益处。这些结果可能会推动患者治疗进程,因为与单一质子微束阵列的情况相比,正常组织所需的峰值剂量更低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb98/8749801/f5107f1cecff/cancers-14-00116-g001.jpg

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