Faillace L, Alesini D, Bisogni G, Bosco F, Carillo M, Cirrone P, Cuttone G, De Arcangelis D, De Gregorio A, Di Martino F, Favaudon V, Ficcadenti L, Francescone D, Franciosini G, Gallo A, Heinrich S, Migliorati M, Mostacci A, Palumbo L, Patera V, Patriarca A, Pensavalle J, Perondi F, Remetti R, Sarti A, Spataro B, Torrisi G, Vannozzi A, Giuliano L
INFN Laboratori Nazionali di Frascati, Italy.
INFN Laboratori Nazionali di Frascati, Italy.
Phys Med. 2022 Dec;104:149-159. doi: 10.1016/j.ejmp.2022.10.018. Epub 2022 Nov 23.
In order to translate the FLASH effect in clinical use and to treat deep tumors, Very High Electron Energy irradiations could represent a valid technique. Here, we address the main issues in the design of a VHEE FLASH machine. We present preliminary results for a compact C-band system aiming to reach a high accelerating gradient and high current necessary to deliver a Ultra High Dose Rate with a beam pulse duration of 3μs.
The proposed system is composed by low energy high current injector linac followed by a high acceleration gradient structure able to reach 60-160 MeV energy range. To obtain the maximum energy, an energy pulse compressor options is considered. CST code was used to define the specifications RF parameters of the linac. To optimize the accelerated current and therefore the delivered dose, beam dynamics simulations was performed using TSTEP and ASTRA codes.
The VHEE parameters Linac suitable to satisfy FLASH criteria were simulated. Preliminary results allow to obtain a maximum energy of 160 MeV, with a peak current of 200 mA, which corresponds to a charge of 600 nC.
A promising preliminary design of VHEE linac for FLASH RT has been performed. Supplementary studies are on going to complete the characterization of the machine and to manufacture and test the RF prototypes.
为了将FLASH效应应用于临床并治疗深部肿瘤,甚高电子能量辐照可能是一种有效的技术。在此,我们探讨甚高能量电子束FLASH放疗设备设计中的主要问题。我们展示了一个紧凑型C波段系统的初步结果,该系统旨在达到高加速梯度和高电流,以在3μs的束脉冲持续时间内实现超高剂量率。
所提出的系统由低能量高电流注入器直线加速器和一个能够达到60 - 160 MeV能量范围的高加速梯度结构组成。为了获得最大能量,考虑了一种能量脉冲压缩器方案。使用CST代码来定义直线加速器的射频参数规格。为了优化加速电流从而优化输送剂量,使用TSTEP和ASTRA代码进行束流动力学模拟。
模拟了适用于满足FLASH标准的甚高能量电子束直线加速器参数。初步结果显示可获得160 MeV的最大能量,峰值电流为200 mA,对应电荷量为600 nC。
已完成用于FLASH放疗的甚高能量电子束直线加速器的初步设计,该设计前景良好。正在进行补充研究以完善该设备的特性描述,并制造和测试射频原型。