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临床直线加速器的 FLASH 电子束剂量学研究。

Dosimetry with a clinical linac adapted to FLASH electron beams.

机构信息

BC Cancer, Surrey Centre, Surrey, BC, Canada.

BC Cancer Research Centre, Vancouver, BC, Canada.

出版信息

J Appl Clin Med Phys. 2021 Jun;22(6):50-59. doi: 10.1002/acm2.13270. Epub 2021 May 24.

Abstract

PURPOSE

To assess dosimetric properties and identify required updates to commonly used protocols (including use of film and ionization chamber) pertaining to a clinical linac configured into FLASH (ultra-high dose rate) electron mode.

METHODS

An 18MV photon beam of a Varian iX linac was converted to FLASH electron beam by replacing the target and the flattening filter with an electron scattering foil. The dose was prescribed by entering the MUs through the console. Fundamental beam properties, including energy, dose rate, dose reproducibility, field size, and dose rate dependence on the SAD, were examined in preparation for radiobiological experiments. Gafchromic EBT-XD film was evaluated for usability in measurements at ultra-high dose rates by comparing the measured dose to the inverse square model. Selected previously reported models of chamber efficiencies were fitted to measurements in a broad range of dose rates.

RESULTS

The performance of the modified linac was found adequate for FLASH radiobiological experiments. With exception of the increase in the dose per MU on increase in the repetition rate, all fundamental beam properties proved to be in line with expectations developed with conventional linacs. The field size followed the theorem of similar triangles. The highest average dose rate (2 × 10  Gy/s) was found next to the internal monitor chamber, with the field size of FWHM = 1.5 cm. Independence of the dose readings on the dose rate (up to 2 × 10  Gy/s) was demonstrated for the EBT-XD film. A model of recombination in an ionization chamber was identified that provided good agreement with the measured chamber efficiencies for the average dose rates up to at least 2 × 10  Gy/s.

CONCLUSION

Dosimetric measurements were performed to characterize a linac converted to FLASH dose rates. Gafchromic EBT-XD film and dose rate-corrected cc13 ionization chamber were demonstrated usable at FLASH dose rates.

摘要

目的

评估剂量学特性,并确定与配置为 FLASH(超高剂量率)电子模式的临床直线加速器相关的常用协议(包括使用胶片和电离室)所需的更新。

方法

通过用电子散射箔替换靶和均整滤过器,将瓦里安 iX 直线加速器的 18MV 光子束转换为 FLASH 电子束。通过控制台输入 MU 来规定剂量。为了进行放射生物学实验,检查了基本束特性,包括能量、剂量率、剂量再现性、射野大小以及 SAD 上的剂量率依赖性。评估了 Gafchromic EBT-XD 胶片在超高剂量率测量中的可用性,方法是将测量剂量与逆平方模型进行比较。将之前报道的一些腔室效率模型拟合到宽剂量率范围内的测量值。

结果

发现经过改装的直线加速器的性能足以满足 FLASH 放射生物学实验的要求。除了重复率增加导致 MU 剂量增加外,所有基本束特性均符合使用传统直线加速器开发的预期。射野大小遵循相似三角形定理。在内部监测腔旁边发现了最高平均剂量率(2×10 Gy/s),其 FWHM 为 1.5 cm。EBT-XD 胶片的剂量读数与剂量率无关(高达 2×10 Gy/s)。确定了电离室中的复合模型,该模型与至少 2×10 Gy/s 时的平均剂量率的测量腔效率具有良好的一致性。

结论

进行了剂量学测量,以表征转换为 FLASH 剂量率的直线加速器。Gafchromic EBT-XD 胶片和剂量率校正的 cc13 电离室已被证明可在 FLASH 剂量率下使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8572/8200504/034a4274e3c7/ACM2-22-50-g006.jpg

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