重新配置平面平行传输电离室,将工作范围扩展到每脉冲超高剂量区。

IF 2.5 3区 医学 Q2 BIOLOGY Radiation research Pub Date : 2024-03-01 DOI:10.1667/RADE-23-00177.1
Elise Konradsson, Rebecka Ericsson Szecsenyi, Pontus Wahlqvist, Andreas Thoft, Börje Blad, Sven Åj Bäck, Crister Ceberg, Kristoffer Petersson
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引用次数: 0

摘要

本研究旨在调查通过重新配置传输室的设计和运行来提高其电荷收集效率(CCE)的可行性。其目标是将无重组效应或重组效应最小的每脉冲剂量(DPP)值范围扩大到超高剂量率(UHDR)机制。我们研究了电极间距分别为 1 毫米和 0.6 毫米的两个透射室的响应与外加电压的函数关系。透射室被一一安装在一台 10 MeV FLASH 改型临床直线加速器的电子涂抹器中。测量的腔室信号是标称 DPP 的函数,DPP 是在固态水中使用 EBT-XD 薄膜在剂量最大深度测定的,范围从每脉冲 0.6 mGy 到每脉冲 0.9 Gy,标准电压为 320 V,最高安全电压为 1,200 V。CCE 随 DPP 的增加而降低。对于电极间距为 1 毫米(0.6 毫米)的腔室,在最高可达到的 DPP 下,320 伏电压下的 CCE 为 24%(36%),1,200 伏电压下的 CCE 为 51%(82%)。对于 1,200 V 和 0.6 mm 电极间距的组合,在源到表面距离为 100 cm 的模型中,剂量最大深度的平均剂量率高达 70 Gy/s,CCE 为 100%。我们的研究结果表明,对平面平行透射室稍加改动,就能大幅提高 CCE,并将透射室的工作范围扩大到超高剂量水平。这支持了将基于透射腔的监测解决方案用于超高分辨光束的潜力,这将有助于采用与传统临床治疗类似的方法进行超高分辨光束治疗。
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Reconfiguring a Plane-Parallel Transmission Ionization Chamber to Extend the Operating Range into the Ultra-High Dose-per-pulse Regime.

This study aims to investigate the feasibility of enhancing the charge collection efficiency (CCE) of a transmission chamber by reconfiguring its design and operation. The goal was to extend the range of dose-per-pulse (DPP) values with no or minimal recombination effects up to the ultra-high dose rate (UHDR) regime. The response of two transmission chambers, with electrode distance of 1 mm and 0.6 mm, respectively, was investigated as a function of applied voltage. The chambers were mounted one-by-one in the electron applicator of a 10 MeV FLASH-modified clinical linear accelerator. The chamber signals were measured as a function of nominal DPP, which was determined at the depth of dose maximum using EBT-XD film in solid water and ranged from 0.6 mGy per pulse to 0.9 Gy per pulse, for both the standard voltage of 320 V and the highest possible safe voltage of 1,200 V. The CCE was calculated and fitted with an empirical logistic function that incorporated the electrode distance and the chamber voltage. The CCE decreased with increased DPP. The CCE at the highest achievable DPP was 24% (36%) at 320 V and 51% (82%) at 1,200 V, for chambers with 1 mm (0.6 mm) electrode distance. For the combination of 1,200 V- and 0.6-mm electrode distance, the CCE was ∼100% for average dose rate up to 70 Gy/s at the depth of dose maximum in the phantom at a source-to-surface distance of 100 cm. Our findings indicate that minor modifications to a plane-parallel transmission chamber can substantially enhance the CCE and extending the chamber's operating range to the UHDR regime. This supports the potential of using transmission chamber-based monitoring solutions for UHDR beams, which could facilitate the delivery of UHDR treatments using an approach similar to conventional clinical delivery.

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来源期刊
Radiation research
Radiation research 医学-核医学
CiteScore
5.10
自引率
8.80%
发文量
179
审稿时长
1 months
期刊介绍: Radiation Research publishes original articles dealing with radiation effects and related subjects in the areas of physics, chemistry, biology and medicine, including epidemiology and translational research. The term radiation is used in its broadest sense and includes specifically ionizing radiation and ultraviolet, visible and infrared light as well as microwaves, ultrasound and heat. Effects may be physical, chemical or biological. Related subjects include (but are not limited to) dosimetry methods and instrumentation, isotope techniques and studies with chemical agents contributing to the understanding of radiation effects.
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