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一种具有高时空分辨率的 2D 条状离子室阵列,用于质子铅笔束扫描 FLASH 放疗。

A 2D strip ionization chamber array with high spatiotemporal resolution for proton pencil beam scanning FLASH radiotherapy.

机构信息

New York Proton Center, New York, New York, USA.

Institute of Physics, Academia Sinica, Taipei, Taiwan.

出版信息

Med Phys. 2022 Aug;49(8):5464-5475. doi: 10.1002/mp.15706. Epub 2022 May 30.

Abstract

PURPOSE

Experimental measurements of two-dimensional (2D) dose rate distributions in proton pencil beam scanning (PBS) FLASH radiation therapy (RT) are currently lacking. In this study, we characterize a newly designed 2D strip-segmented ionization chamber array (SICA) with high spatial and temporal resolution and demonstrate its applications in a modern proton PBS delivery system at both conventional and ultrahigh dose rates.

METHODS

A dedicated research beamline of the Varian ProBeam system was employed to deliver a 250-MeV proton PBS beam with nozzle currents up to 215 nA. In the research and clinical beamlines, the spatial, temporal, and dosimetric performances of the SICA were characterized and compared with measurements using parallel-plate ion chambers (IBA PPC05 and PTW Advanced Markus chamber), a 2D scintillator camera (IBA Lynx), Gafchromic films (EBT-XD), and a Faraday cup. A novel reconstruction approach was proposed to enable the measurement of 2D dose and dose rate distributions using such a strip-type detector.

RESULTS

The SICA demonstrated a position accuracy of 0.12 ± 0.02 mm at a 20-kHz sampling rate (50 μs per event) and a linearity of R  > 0.99 for both dose and dose rate with nozzle beam currents ranging from 1 to 215 nA. The 2D dose comparison to the film measurement resulted in a gamma passing rate of 99.8% (2 mm/2%). A measurement-based proton PBS 2D FLASH dose rate distribution was compared to simulation results and showed a gamma passing rate of 97.3% (2 mm/2%).

CONCLUSIONS

The newly designed SICA demonstrated excellent spatial, temporal, and dosimetric performances and is well suited for commissioning, quality assurance, and a wide range of clinical applications in proton PBS clinical and FLASH-RT.

摘要

目的

目前缺乏质子笔束扫描(PBS)FLASH 放射治疗(RT)中二维(2D)剂量率分布的实验测量。在这项研究中,我们对具有高空间和时间分辨率的新型二维条状分段电离室阵列(SICA)进行了表征,并在传统和超高剂量率下在现代质子 PBS 输送系统中展示了其应用。

方法

利用瓦里安 ProBeam 系统的专用研究束线,可输送最大 215 nA 束流的 250 MeV 质子 PBS 束。在研究和临床束线中,对 SICA 的空间、时间和剂量学性能进行了表征,并与使用平行板电离室(IBA PPC05 和 PTW 高级 Markus 室)、二维闪烁体相机(IBA Lynx)、Gafchromic 胶片(EBT-XD)和法拉第杯进行了比较。提出了一种新的重建方法,可使用这种条带型探测器测量 2D 剂量和剂量率分布。

结果

在 20 kHz 的采样率(每个事件 50 μs)下,SICA 的位置精度为 0.12 ± 0.02 mm,在 1 至 215 nA 的束流范围内,剂量和剂量率的线性度均大于 0.99。与胶片测量相比,2D 剂量比较的伽马通过率为 99.8%(2mm/2%)。基于测量的质子 PBS 2D FLASH 剂量率分布与模拟结果进行了比较,伽马通过率为 97.3%(2mm/2%)。

结论

新设计的 SICA 表现出优异的空间、时间和剂量学性能,非常适合质子 PBS 临床和 FLASH-RT 的调试、质量保证和广泛的临床应用。

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