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小射野剂量学中微型电离室的验证

Validation of Microionization Chambers in Small-field Dosimetry.

作者信息

Kannan Mageshraja, Saminathan Sathiyan, Shwetha B, Chandraraj Varatharaj, Raj D Gowtham, Ganesh K M

机构信息

Department of Radiation Physics, Kidwai Memorial Institute of Oncology, Bengaluru, Karnataka, India.

出版信息

J Med Phys. 2024 Apr-Jun;49(2):285-293. doi: 10.4103/jmp.jmp_9_24. Epub 2024 Jun 25.

Abstract

AIM

This study aims to validate the Razor Nano Chamber (RNC) and Razor Chamber (RC) dosimetric characteristics in a small field. The dosimetric parameters of the two chambers were compared.

MATERIALS AND METHODS

The chamber characteristics of leakage (pre and post), stability, energy dependency, dose linearity, dose rate effect, stem effect, angular dependency, ion recombination effect, and polarity effect were studied. Relative dose measurements of the percentage depth dose, profile measurement, and output factor (OF) measurements were performed for small fields. All measurements were performed in a Theratron 780E telecobalt unit and an Elekta Versa HD™ Linear Accelerator.

RESULTS AND DISCUSSION

The measured pre- and postirradiation leakage and energy dependency were within 0.5% of the acceptable limit. In the stability check, the standard error and standard error of mean were 0.047% and 0.068%, respectively, for both RNC and RC. The deviation in the angular responses of the RNC and RC ion chambers was negligible. In the ion recombination measurements, both the RNC and RC were overestimated for the 10 flattening filter-free photon beam. In small fields, there were no significant differences in the k values for either chamber. The RNC showed good agreement in the relative dose measurements compared to the RC.

CONCLUSION

RNC and RC showed good agreement in small-field dosimetry. The RNC angular dependency and OF showed a superior response compared to the RC because of the small volume spherical shape and high spatial resolution, which gives a reduced penumbra and no volume averaging effect.

摘要

目的

本研究旨在验证小射野中Razor纳米电离室(RNC)和Razor电离室(RC)的剂量学特性。比较了这两种电离室的剂量学参数。

材料与方法

研究了电离室的泄漏(辐照前后)、稳定性、能量依赖性、剂量线性、剂量率效应、杆效应、角度依赖性、离子复合效应和极性效应等特性。对小射野进行了百分深度剂量的相对剂量测量、剖面测量和输出因子(OF)测量。所有测量均在Theratron 780E远距离钴治疗机和医科达Versa HD™直线加速器中进行。

结果与讨论

测得的辐照前后泄漏和能量依赖性在可接受限值的0.5%以内。在稳定性检查中,RNC和RC的标准误差和平均标准误差分别为0.047%和0.068%。RNC和RC电离室的角度响应偏差可忽略不计。在离子复合测量中,对于10MV无均整器光子束,RNC和RC均被高估。在小射野中,两种电离室的k值均无显著差异。与RC相比,RNC在相对剂量测量中显示出良好的一致性。

结论

RNC和RC在小射野剂量学中显示出良好的一致性。由于小体积球形形状和高空间分辨率,RNC的角度依赖性和输出因子显示出比RC更好的响应,这使得半值层减小且无体积平均效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26af/11309149/2dbe149ce54d/JMP-49-285-g001.jpg

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