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FLASH 放疗计划制定和电子束模型。

FLASH radiotherapy treatment planning and models for electron beams.

机构信息

Thayer School of Engineering, Dartmouth College, Hanover, NH, USA.

Physics Department, "La Sapienza" University of Rome, Rome, Italy; INFN National Institute of Nuclear Physics, Rome Section, Rome, Italy.

出版信息

Radiother Oncol. 2022 Oct;175:210-221. doi: 10.1016/j.radonc.2022.08.009. Epub 2022 Aug 11.

Abstract

The FLASH effect designates normal tissue sparing at ultra-high dose rate (UHDR, >40 Gy/s) compared to conventional dose rate (∼0.1 Gy/s) irradiation while maintaining tumour control and has the potential to improve the therapeutic ratio of radiotherapy (RT). UHDR high-energy electron (HEE, 4-20 MeV) beams are currently a mainstay for investigating the clinical potential of FLASH RT for superficial tumours. In the future very-high energy electron (VHEE, 50-250 MeV) UHDR beams may be used to treat deep-seated tumours. UHDR HEE treatment planning focused at its initial stage on accurate dosimetric modelling of converted and dedicated UHDR electron RT devices for the clinical transfer of FLASH RT. VHEE treatment planning demonstrated promising dosimetric performance compared to clinical photon RT techniques in silico and was used to evaluate and optimise the design of novel VHEE RT devices. Multiple metrics and models have been proposed for a quantitative description of the FLASH effect in treatment planning, but an improved experimental characterization and understanding of the FLASH effect is needed to allow for an accurate and validated modelling of the effect in treatment planning. The importance of treatment planning for electron FLASH RT will augment as the field moves forward to treat more complex clinical indications and target sites. In this review, TPS developments in HEE and VHEE are presented considering beam models, characteristics, and future FLASH applications.

摘要

FLASH 效应是指与常规剂量率(约 0.1 Gy/s)照射相比,超高剂量率(UHDR,>40 Gy/s)下正常组织的保护作用,同时保持肿瘤控制,并有潜力提高放射治疗(RT)的治疗比。目前,UHDR 高能电子(HEE,4-20 MeV)束是研究 FLASH RT 治疗浅表肿瘤的临床潜力的主要手段。在未来,超高能电子(VHEE,50-250 MeV)UHDR 束可能用于治疗深部肿瘤。UHDR HEE 治疗计划在其初始阶段集中于对转换和专用 UHDR 电子 RT 设备的精确剂量学建模,以将 FLASH RT 临床转化。与临床光子 RT 技术相比,VHEE 治疗计划在计算机模拟中显示出有前途的剂量学性能,并用于评估和优化新型 VHEE RT 设备的设计。已经提出了多种指标和模型来定量描述治疗计划中的 FLASH 效应,但需要对 FLASH 效应进行改进的实验表征和理解,以便在治疗计划中对该效应进行准确和验证的建模。随着该领域向治疗更复杂的临床适应症和靶区推进,电子 FLASH RT 的治疗计划的重要性将会增加。在本文中,我们介绍了 HEE 和 VHEE 中的 TPS 发展,考虑了束模型、特性和未来的 FLASH 应用。

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