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超高剂量率电子“FLASH”放射治疗中的点闪烁体剂量测定:初步特征描述。

Point scintillator dosimetry in ultra-high dose rate electron "FLASH" radiation therapy: A first characterization.

机构信息

Research in Dosimetric Applications, SCK CEN, Mol, Belgium; CORE, University of Antwerp, Antwerp, Belgium; Iridium Netwerk, Wilrijk, Belgium.

CORE, University of Antwerp, Antwerp, Belgium; Iridium Netwerk, Wilrijk, Belgium.

出版信息

Phys Med. 2022 Nov;103:127-137. doi: 10.1016/j.ejmp.2022.10.005. Epub 2022 Oct 24.

Abstract

FLASH radiation therapy is a novel technique combining ultra-high dose rates (UHDR) with very short treatment times to strongly decrease normal tissue toxicity while preserving the anti-tumoral effect. However, the radiobiological mechanisms and exact conditions for obtaining the FLASH-effect are still under investigation. There are strong indications that parameters defining the beam structure, such as dose per pulse, instantaneous dose rate and pulse repetition frequency (PRF) are of importance. UHDR irradiations therefore come with dosimetric challenges, including both dose assessment and temporal ones. In this work, a first characterization of 6 real-time point scintillating dosimeters with 5 phosphors (AlO:C,Mg; YO:Eu; AlO:C; (CHP)MnBr and (CHP)MnCl, was performed in an UHDR pulsed electron beam. The dose rate independence of the calibration was tested by calibrating the detector at conventional and UHDR. Dose rate dependence was observed, however, further investigation, including intermediate dose rates, is needed. Linearity of the response with dose was tested by varying the number of pulses and a linearity with R> 0.9989 was observed up to at least 200 Gy. Dose per pulse linearity was investigated by variation of the pulse length and SSD. All point scintillators showed saturation effects up to some extent and the instantaneous dose rate dependence was confirmed. A PRF dependence was observed for the AlO:C,Mg and AlO:C- based point scintillators. This was expected as the luminescence decay time of these materials exceeds the inter-pulse time.

摘要

FLASH 放射治疗是一种将超高剂量率(UHDR)与极短的治疗时间相结合的新技术,可强烈降低正常组织毒性,同时保留抗肿瘤效果。然而,FLASH 效应的放射生物学机制和确切条件仍在研究中。有强烈的迹象表明,定义光束结构的参数,如脉冲剂量、瞬时剂量率和脉冲重复频率(PRF)很重要。因此,超高剂量率照射带来了剂量评估和时间方面的挑战。在这项工作中,首次在 UHDR 脉冲电子束中对 6 种实时点闪烁剂量计和 5 种荧光粉(AlO:C,Mg;YO:Eu;AlO:C;(CHP)MnBr 和(CHP)MnCl)进行了特性描述。通过在常规剂量率和 UHDR 下校准探测器,测试了校准的剂量率独立性。然而,观察到剂量率依赖性,需要进一步调查,包括中间剂量率。通过改变脉冲数测试了响应与剂量的线性关系,观察到线性度 R>0.9989,至少到 200 Gy。通过改变脉冲长度和 SSD 研究了脉冲剂量的线性关系。所有点闪烁体在一定程度上都表现出饱和效应,并证实了瞬时剂量率的依赖性。AlO:C,Mg 和基于 AlO:C 的点闪烁体观察到 PRF 依赖性。这是意料之中的,因为这些材料的发光衰减时间超过了脉冲之间的时间。

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