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表面敷贴器校准及电子近距离放射治疗系统在非黑素瘤皮肤癌治疗中的调试。

Surface applicator calibration and commissioning of an electronic brachytherapy system for nonmelanoma skin cancer treatment.

机构信息

Department of Human Oncology, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin 53792, USA.

出版信息

Med Phys. 2010 Oct;37(10):5509-17. doi: 10.1118/1.3489379.

Abstract

PURPOSE

The Xoft Axxent x-ray source has been used for treating nonmelanoma skin cancer since the surface applicators became clinically available in 2009. The authors report comprehensive calibration procedures for the electronic brachytherapy (eBx) system with the surface applicators.

METHODS

The Xoft miniature tube (model S700) generates 50 kVp low-energy x rays. The new surface applicators are available in four sizes of 10, 20, 35, and 50 mm in diameter. The authors' tests include measurements of dose rate, air-gap factor, output stability, depth dose verification, beam flatness and symmetry, and treatment planning with patient specific cutout factors. The TG-61 in-air method was used as a guideline for acquiring nominal dose-rate output at the skin surface. A soft x-ray parallel-plate chamber (PTW T34013) and electrometer was used for the output commissioning. GafChromic EBT films were used for testing the properties of the treatment fields with the skin applicators. Solid water slabs were used to verify the depth dose and cutout factors. Patients with basal cell or squamous cell carcinoma were treated with eBx using a calibrated Xoft system with the low-energy x-ray source and the skin applicators.

RESULTS

The average nominal dose-rate output at the skin surface for the 35 mm applicator is 1.35 Gy/min with +/- 5% variation for 16 sources. The dose-rate output and stability (within +/- 5% variation) were also measured for the remaining three applicators. For the same source, the output variation is within 2%. The effective source-surface distance was calculated based on the air-gap measurements for four applicator sizes. The field flatness and symmetry are well within 5%. Percentage depth dose in water was provided by factory measurements and can be verified using solid water slabs. Treatment duration was calculated based on the nominal dose rate, the prescription fraction size, the depth dose percentage, and the cutout factor. The output factor needs to be measured for each case with varying shapes of cutouts.

CONCLUSIONS

Together with TG-61, the authors' methodology provides comprehensive calibration procedures for medical physicists for using the Xoft eBx system and skin applicators for nonmelanoma skin cancer treatments.

摘要

目的

自 2009 年 Xoft Axxent X 射线源的表面敷贴器开始应用于临床以来,一直用于治疗非黑色素瘤皮肤癌。作者报告了带有表面敷贴器的电子近距离放疗(eBx)系统的综合校准程序。

方法

Xoft 微型管(型号 S700)产生 50 kVp 低能 X 射线。新的表面敷贴器有四种尺寸,直径分别为 10、20、35 和 50 毫米。作者的测试包括剂量率、空气间隙因子、输出稳定性、深度剂量验证、射束平坦度和对称性以及使用患者特定切除因子的治疗计划的测量。TG-61 在空气中的方法被用作在皮肤表面获得标称剂量率输出的指南。使用软 X 射线平行板电离室(PTW T34013)和静电计进行输出调试。使用 GafChromic EBT 胶片测试带有皮肤敷贴器的治疗场的特性。使用固体水平板验证深度剂量和切除因子。使用经过校准的 Xoft 系统和低能 X 射线源以及皮肤敷贴器治疗基底细胞癌或鳞状细胞癌患者。

结果

35 毫米敷贴器在皮肤表面的平均标称剂量率输出为 1.35 Gy/min,16 个源的变化在+/- 5%以内。还测量了其余三个敷贴器的剂量率输出和稳定性(在+/- 5%的变化范围内)。对于同一源,输出变化在 2%以内。根据四个敷贴器尺寸的空气间隙测量值计算有效源-皮肤距离。射束平坦度和对称性均在 5%以内。水的百分深度剂量由工厂测量提供,也可以使用固体水平板进行验证。治疗持续时间根据名义剂量率、处方分割大小、深度剂量百分比和切除因子计算。需要为每个具有不同形状切除的病例测量输出因子。

结论

结合 TG-61,作者的方法为医疗物理学家提供了使用 Xoft eBx 系统和皮肤敷贴器治疗非黑色素瘤皮肤癌的综合校准程序。

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