Department of Carbon Ion Radiotherapy, Osaka University Graduate School of Medicine, Osaka, Japan.
Department of Medical Physics, Osaka Heavy Ion Therapy Center, Osaka, Japan.
Anticancer Res. 2023 Feb;43(2):581-589. doi: 10.21873/anticanres.16194.
BACKGROUND/AIM: The focus of this report is establishing an irradiation arrangement to realize an ultra-high dose-rate (uHDR; FLASH) of scanned carbon-ion irradiation possible with a compact commonly available medical synchrotron.
Following adjustments to the operation it became possible to extract ≥1.0×10 carbon ions at 208.3 MeV/u (86 mm in range) per 100 ms. The design takes the utmost care to prevent damage to monitors, particularly in the nozzle, achieved by the uHDR beam not passing through this part of the apparatus. Doses were adjusted by extraction times, using a function generator. After one scan by the carbon-ion beam it became possible to create a field within the extraction time. The Advanced Markus chamber (AMC) and Gafchromic film are then able to measure the absolute dose and field size at a plateau depth, with the operating voltage of the chamber at 400 V at the uHDR for the AMC.
The beam scanning utilizing this uHDR irradiation could be confirmed at a dose of 6.5±0.08 Gy (±3% homogeneous) at this volume over at least 16×16 mm corresponding to a dose-rate of 92.3 Gy/s (±1.3%). The dose was ca. 0.7, 1.5, 2.9, and 5.4 Gy depending on dose-rate and field size, with the rate of killed cells increasing with the irradiation dose.
The compact medical synchrotron achieved FLASH dose-rates of >40 Gy/s at different dose levels and in useful field sizes for research with the apparatus and arrangement developed here.
背景/目的:本报告的重点是建立一种辐照方案,以实现紧凑型常用医用同步加速器实现超高峰值剂量率(FLASH)的扫描碳离子辐照。
对操作进行调整后,每次 100 毫秒可提取≥1.0×10 个 208.3 MeV/u(射程 86 毫米)的碳离子。设计最大限度地防止监视器损坏,特别是在喷嘴处,通过不使 uHDR 束通过仪器的这部分来实现。剂量通过提取时间进行调整,使用函数发生器。在碳离子束扫描一次后,即可在提取时间内创建一个场。然后,Advanced Markus 室(AMC)和 Gafchromic 胶片能够测量在平台深度处的绝对剂量和场尺寸,其中 AMC 的室操作电压为 400 V 在 uHDR。
利用这种 uHDR 辐照进行的束扫描可以在至少 16×16mm 的体积上确认剂量为 6.5±0.08 Gy(±3%均匀),相应的剂量率为 92.3 Gy/s(±1.3%)。剂量取决于剂量率和场尺寸,在 0.7、1.5、2.9 和 5.4 Gy 左右,随着辐照剂量的增加,杀死的细胞数量增加。
这里开发的装置和布置实现了在不同剂量水平和有用的场尺寸下达到>40 Gy/s 的紧凑型医用同步加速器的 FLASH 剂量率,用于研究。