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NIRS-HIMAC 中扫描离子束的患者特异性 QA 和递送验证。

Patient-specific QA and delivery verification of scanned ion beam at NIRS-HIMAC.

机构信息

Medical Physics Research Group, Research Center for Charged Particle Therapy, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.

出版信息

Med Phys. 2013 Dec;40(12):121707. doi: 10.1118/1.4828845.

Abstract

PURPOSE

To evaluate a patient-specific QA program and system for constancy checking of a scanning delivery system developed at the National Institute of Radiological Sciences.

METHODS

For the patient-specific QA, all the planned beams are recalculated on a water phantom with treatment planning software (TPS). The recalculated dose distributions are compared with the measured distributions using a 2D ionization chamber array at several depths, and evaluated using gamma index analysis with criteria of 3% and 3 mm and a pass rate of 90%. For the constancy check, the authors developed the multiwire proportional chamber (MWPC), which can record the delivered 2D fluence images in a slice-by-slice manner. During irradiation for dosimetric QA with the 2D ionization chamber array and an accordion-type water phantom, the 2D fluence images are recorded using the MWPC in the delivery system. These recorded images are then compared to those taken in the treatment session to check the constancy check. This analysis also employs gamma index analysis using the same criteria as in the patient-specific QA. These patient-specific QA and constancy check evaluations were performed using the data of 122 patients.

RESULTS

In the patient-specific QA, the measured dose distributions agreed well with those calculated by the TPS, and the QA criteria were satisfied in all measurements. The additional check of the fluence comparison ensured the constancy of the delivered field during each treatment irradiation.

CONCLUSIONS

The authors established a patient-specific QA program and additional check of delivery constancy in every treatment session. Fluence comparison is a strong tool for constancy checking of the delivery system.

摘要

目的

评估国立放射科学研究所开发的扫描输送系统的恒定性检查的患者特异性 QA 程序和系统。

方法

对于患者特异性 QA,使用治疗计划软件(TPS)在水模体上重新计算所有计划的射束。使用二维电离室阵列在几个深度处比较重新计算的剂量分布与测量的分布,并使用 3%和 3 毫米的伽马指数分析标准和 90%的通过率进行评估。为了进行恒定性检查,作者开发了多丝正比室(MWPC),它可以逐片记录输送的二维通量图像。在使用二维电离室阵列和风琴式水模体进行剂量学 QA 照射期间,MWPC 在输送系统中记录二维通量图像。然后将这些记录的图像与治疗过程中拍摄的图像进行比较,以检查恒定性检查。该分析还使用与患者特异性 QA 相同的标准进行伽马指数分析。使用 122 名患者的数据进行了这些患者特异性 QA 和恒定性检查评估。

结果

在患者特异性 QA 中,测量的剂量分布与 TPS 计算的剂量分布吻合良好,所有测量均满足 QA 标准。通量比较的附加检查确保了每次治疗照射期间输送场的恒定性。

结论

作者建立了患者特异性 QA 程序和每个治疗疗程的输送恒定性附加检查。通量比较是输送系统恒定性检查的有力工具。

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