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英国用于高剂量率和超高剂量率(FLASH)辐照的高能质子研究束线的特性描述。

Characterisation of the UK high energy proton research beamline for high and ultra-high dose rate (FLASH) irradiation.

作者信息

Aylward J D, Henthorn N, Manger S, Warmenhoven J W, Merchant M J, Taylor M J, Mackay R I, Kirkby K J

机构信息

Division of Cancer Sciences, Faculty of Biology, Medicine and Health, The University of Manchester, Manchester, United Kingdom.

Christie Medical Physics and Engineering, The Christie NHS Foundation Trust, Manchester, United Kingdom.

出版信息

Biomed Phys Eng Express. 2023 Sep 4;9(5). doi: 10.1088/2057-1976/acef25.

Abstract

. This work sets out the capabilities of the high energy proton research beamline developed in the Christie proton therapy centre for Ultra-High Dose Rate (UHDR) irradiation and FLASH experiments. It also characterises the lower limits of UHDR operation for this Pencil Beam Scanning (PBS) proton hardware.. Energy dependent nozzle transmission was measured using a Faraday Cup beam collector. Spot size was measured at the reference plane using a 2D scintillation detector. Integrated depth doses (IDDs) were measured. EBT3 Gafchromic film was used to compare UHDR and conventional dose rate spots. Our beam monitor calibration methodolgy for UHDR is described. A microDiamond detector was used to determine dose rates at z. Instantaneous depth dose rates were calculated for 70-245 MeV. PBS dose rate distributions were calculated using Folkerts and Van der Water definitions.. Transmission of 7.05 ± 0.1% is achieveable corresponding to a peak instantaneous dose rate of 112.7 Gy s. Beam parameters are comparable in conventional and UHDR mode with a spot size of= 4.6 mm,= 6.6 mm. Dead time in the beam monitoring electonics warrants a beam current dependent MU correction in the present configuration. Fast beam scanning of 26.4 m s(X) and 12.1 m s(Y) allows PBS dose rates of the order tens of Grays per second.. UHDR delivery is possible for small field sizes and high energies enabling research into the FLASH effect with PBS protons at our facility. To our knowledge this is also the first thorough characterisation of UHDR irradiation using the hardware of this clinical accelerator at energies less than 250 MeV. The data set out in this publication can be used for designing experiments at this UK research facility and inform the possible future clinical translation of UHDR PBS proton therapy.

摘要

这项工作阐述了在克里斯蒂质子治疗中心开发的用于超高剂量率(UHDR)照射和FLASH实验的高能质子研究束线的性能。它还表征了这种笔形束扫描(PBS)质子硬件UHDR操作的下限。使用法拉第杯束流收集器测量了能量相关的喷嘴传输。使用二维闪烁探测器在参考平面测量光斑尺寸。测量了积分深度剂量(IDD)。使用EBT3变色膜比较UHDR和传统剂量率光斑。描述了我们用于UHDR的束流监测校准方法。使用微金刚石探测器确定z处的剂量率。计算了70 - 245 MeV的瞬时深度剂量率。使用Folkerts和Van der Water定义计算了PBS剂量率分布。实现了7.05±0.1%的传输率,对应峰值瞬时剂量率为112.7 Gy/s。传统模式和UHDR模式下的束流参数具有可比性,光斑尺寸为 = 4.6 mm, = 6.6 mm。在当前配置下,束流监测电子设备中的死时间需要进行与束流电流相关的MU校正。26.4 m s(X)和12.1 m s(Y)的快速束流扫描允许PBS剂量率达到每秒数十格雷的量级。对于小场尺寸和高能量,UHDR输送是可行的,这使得我们能够利用PBS质子研究FLASH效应。据我们所知,这也是首次使用该临床加速器硬件在能量低于250 MeV时对UHDR照射进行全面表征。本出版物中列出的数据可用于设计该英国研究设施的实验,并为UHDR PBS质子治疗未来可能的临床转化提供参考。

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