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直线加速器放射等中心精度的研究——机架、治疗床和准直器等中心综合评估的新方法

Investigation of Radiation Isocenter Accuracy of Linear Accelerator - New Approach of Comprehensive Evaluation of Gantry, Couch, and Collimator Isocenters.

作者信息

Rao Avinash Kuppa, Palanisamy Manikandan, Subrahmanyam G V, Swathi S P, Mani Tamilarasan

机构信息

Department of Research and Development, Panacea Medical Technologies Pvt. Ltd., Kolar, Karnataka, India.

出版信息

J Med Phys. 2025 Jan-Mar;50(1):160-163. doi: 10.4103/jmp.jmp_131_24. Epub 2025 Mar 24.

Abstract

OBJECTIVE

For stereotactic machines, recommendations demand stringent localization and precise delivery, as reflected by isocenter verification. Determining and analyzing the radiation isocenter for all clinical combinations of gantry, collimator, and couch are crucial for the quality of radiation therapy delivered. Although several radiation isocenter verification devices exist, there is no time-efficient system available for verifying the combined radiation isocenter. This paper presents a newly patented approach for the combined accuracy verification of the gantry, collimator, and couch radiation isocenter.

METHODS

The novel combined radiation isocenter verification tool is used to expose a star test pattern on the dosimetric film at various angular combinations of the gantry, collimator, and couch. The exposed dosimetric film was evaluated using Radiochromic.com's standard third-party film analysis software.

RESULTS

According to the results, the combined radiation isocenter for unit 1 is 0.74 mm dia (0.37 mm radius), and for unit 2, it is 0.62 mm dia (0.31 mm radius). These results are in good agreement with the requirements for three-dimensional conformal radiotherapy, intensity-modulated radiation therapy, volumetric-modulated arc therapy, stereotactic radiosurgery, and stereotactic body radiotherapy techniques.

CONCLUSION

This combined radiation isocenter verification tool aids in comprehensive evaluation of gantry, couch and collimator isocenters using radiographic film. It is easier to implement and faster to analyse compared to existing techniques, using a PC-based program that minimizes human error and increases measurement accuracy. This new approach can be used for routine quality assurance checks.

摘要

目的

对于立体定向放射治疗设备,相关建议要求严格的定位和精确的投照,等中心验证即体现了这一点。确定并分析机架、准直器和治疗床所有临床组合情况下的放射等中心,对于所实施的放射治疗质量至关重要。尽管存在多种放射等中心验证设备,但尚无一种高效的系统可用于验证组合放射等中心。本文介绍一种新获得专利的方法,用于对机架、准直器和治疗床的放射等中心进行联合精度验证。

方法

使用新型组合放射等中心验证工具,在机架、准直器和治疗床的各种角度组合下,在剂量测定胶片上曝光一个星型测试图案。使用Radiochromic.com的标准第三方胶片分析软件对曝光后的剂量测定胶片进行评估。

结果

根据结果,1号设备的组合放射等中心直径为0.74毫米(半径0.37毫米),2号设备的组合放射等中心直径为0.62毫米(半径0.31毫米)。这些结果与三维适形放射治疗、调强放射治疗、容积调强弧形治疗、立体定向放射外科和立体定向体部放射治疗技术的要求高度一致。

结论

这种组合放射等中心验证工具有助于使用射线照相胶片对机架、治疗床和准直器等中心进行全面评估。与现有技术相比,它更易于实施且分析速度更快,使用基于个人电脑的程序可将人为误差降至最低并提高测量精度。这种新方法可用于常规质量保证检查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3112/12005646/deccce17832c/JMP-50-160-g001.jpg

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