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用于超高脉冲剂量率电子束绝对剂量测量的探针型石墨体辐射计 Aerrow

The probe-format graphite calorimeter, Aerrow, for absolute dosimetry in ultrahigh pulse dose rate electron beams.

机构信息

Dosimetry for Radiation Therapy and Diagnostic Radiology, Physikalisch-Technische Bundesanstalt (PTB), Braunschweig, Lower Saxony, Germany.

Medical Physics Unit, McGill University, Montreal, Quebec, Canada.

出版信息

Med Phys. 2022 Oct;49(10):6635-6645. doi: 10.1002/mp.15899. Epub 2022 Aug 14.

Abstract

PURPOSE

The purpose of this investigation is to evaluate the use of a probe-format graphite calorimeter, Aerrow, as an absolute and relative dosimeter of high-energy pulse dose rate (UHPDR) electron beams for in-water reference and depth-dose-type measurements, respectively.

METHODS

In this paper, the calorimeter system is used to investigate the potential influence of dose per pulses delivered up to 5.6 Gy, the number of pulses delivered per measurement, and its potential for relative measurement (depth-dose curve measurement). The calorimeter system is directly compared against an Advanced Markus ion chamber. The finite element method was used to calculate heat transfer corrections along the percentage depth dose of a 20-MeV electron beam. Monte Carlo-calculated dose conversion factors necessary to calculate absorbed dose-to-water at a point from the measured dose-to-graphite are also presented.

RESULTS

The comparison of Aerrow against a fully calibrated Advanced Markus chamber, corrected for the saturation effect, has shown consistent results in terms of dose-to-water determination. The measured reference depth is within 0.5 mm from the expected value from Monte Carlo simulation. The relative standard uncertainty estimated for Aerrow was 1.06%, which is larger compared to alanine dosimetry (McEwen et al. https://doi.org/10.1088/0026-1394/52/2/272) but has the advantage of being a real-time detector.

CONCLUSION

In this investigation, it was demonstrated that the Aerrow probe-type graphite calorimeter can be used for relative and absolute dosimetries in water in an UHPDR electron beam. To the author's knowledge, this is the first reported use of an absorbed dose calorimeter for an in-water percentage depth-dose curve measurement. The use of the Aerrow in quasi-adiabatic mode has greatly simplified the signal readout, compared to isothermal mode, as the resistance was directly measured with a high-stability digital multimeter.

摘要

目的

本研究旨在评估探针式石墨量热计 Aerrow 在水中参考点和深度剂量型测量中作为高能脉冲剂量率(UHPDR)电子束的绝对和相对剂量计的用途,分别用于绝对和相对剂量测量。

方法

在本文中,使用量热计系统研究了高达 5.6Gy 的剂量脉冲数、每次测量的脉冲数以及其相对测量(深度剂量曲线测量)的潜在影响。量热计系统直接与先进的 Markus 离子室进行比较。有限元法用于计算 20MeV 电子束的百分深度剂量的热传递修正。还提出了从测量的石墨剂量转换为水中吸收剂量所需的蒙特卡罗计算剂量转换因子。

结果

Aerrow 与经过饱和效应修正的完全校准的先进 Markus 腔室的比较表明,在水剂量测定方面结果一致。测量的参考深度与蒙特卡罗模拟的预期值相差 0.5mm。Aerrow 的相对标准不确定度估计为 1.06%,与丙氨酸剂量测定(McEwen 等人,https://doi.org/10.1088/0026-1394/52/2/272)相比更大,但具有实时探测器的优势。

结论

在本研究中,证明 Aerrow 探针式石墨量热计可用于 UHPDR 电子束中的水中相对和绝对剂量测量。据作者所知,这是首次报道使用吸收剂量量热计进行水中百分深度剂量曲线测量。与等温模式相比,Aerrow 在准绝热模式下的使用大大简化了信号读取,因为电阻可以直接用高稳定性数字万用表测量。

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