Department of Radiation Oncology, University of California, Irvine, California, USA.
Department of Radiotherapy, Iridium Network, Antwerp, Belgium.
Med Phys. 2022 Mar;49(3):2055-2067. doi: 10.1002/mp.15222. Epub 2021 Nov 7.
Ultra-high-dose rate "FLASH" radiotherapy (FLASH-RT) has been shown to drastically reduce normal tissue toxicities while being as efficacious as conventional dose rate radiotherapy to treat tumors. A large number of preclinical studies describing this so-called FLASH effect have led to the clinical translation of FLASH-RT using ultra-high-dose rate electron and proton beams. Although the vast majority of radiation therapy treatments are delivered using X-rays, few preclinical data using ultra-high-dose rate X-ray irradiation have been published. This review focuses on different methods that can be used to generate ultra-high-dose rate X-rays and their beam characteristics along with their effect on the biological tissues and the perspectives for the development of FLASH-RT with X-rays.
超高压率“FLASH”放疗(FLASH-RT)已被证明在治疗肿瘤方面与常规剂量率放疗一样有效,但能极大地降低正常组织毒性。大量描述这种所谓的 FLASH 效应的临床前研究导致了使用超高剂量率电子和质子束进行 FLASH-RT 的临床转化。尽管绝大多数放射治疗都是使用 X 射线进行的,但使用超高剂量率 X 射线照射的临床前数据很少。本文综述了不同的方法,可用于产生超高剂量率 X 射线及其束特性,以及它们对生物组织的影响,以及 X 射线 FLASH-RT 的发展前景。