[Development of a System for Evaluating the In-room-laser Alignment Including the Horizontality and Verticality Integrated the Light/Radiation Field Coincidence Test and the Winston-Lutz Test].

Hidetoshi Shimizu, Satoshi Murasawa, Kuniyasu Okudaira, Takahiro Aoyama, Shigeo Anai, Kazuharu Nishitani, Tomoki Kitagawa, Koji Sasaki
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Abstract

Purpose: The in-room laser which is used for patient positioning in radiotherapy is generally projected on the radiation isocenter determined by the Winston-Lutz test and so on. In this study, a couch-mounted verification device was developed that could evaluate all in-room lasers' alignment including the horizontality and verticality at one time. The device has the function to perform the light/radiation field coincidence test and the Winston-Lutz test at the same time. The aim of this report was to introduce the verification procedure for two tests, using the newly developed software and device, and to present the tuning flow of the in-room laser. Moreover, the analysis accuracy of the developed software was evaluated in comparison with commercial software.

Methods: First, the light/radiation field was evaluated by using tungsten markers on the central surface of the device. Next, after aligning the long-carved lines on the front and sides of the device with the in-room lasers, the Winston-Lutz test was carried out by using the tungsten sphere in the center of the device. The acquired images were collectively analyzed using the developed software equipped with the reporting function. Additionally, the result of this Winston-Lutz test was compared with the result from commercial software.

Results: A series of the light/radiation field coincidence test and the Winston-Lutz test were analyzed using the developed device and software. The results could be easily confirmed using the reporting function of the software. Regarding the result of the Winston-Lutz test, most of the analysis differences between the developed software and commercially available software were within the pixel size (0.22 mm).

Discussions: Since the accuracy of the radiation field affects the result of the Winston-Lutz test, the presented procedure of performing the light/radiation coincidence field test in advance facilitates the interpretation of the error of the Winston-Lutz test. Based on the results of the Winston-Lutz test, we were able to demonstrate the tuning flow of all in-room lasers including the horizontality and verticality by using the developed device.

Conclusions: We have developed a couch-mounted verification device and software that can evaluate the light/radiation coincidence field test and the alignment including the horizontality and verticality of the in-room laser used for patient positioning in radiotherapy, and reported its usefulness. The analysis accuracy of the developed software was comparable to that of commercially available software. The use of this device and the developed software would contribute to not only the efficiency of adjusting all in-room lasers' alignment including the horizontality and verticality but also reflect accurately the result of the Winston-Lutz test.

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[结合光场/辐射场一致性测试和温斯顿-卢茨测试的室内激光对准水平和垂直度评估系统的开发]。
目的:放射治疗中用于患者定位的室内激光,一般是在温斯顿-卢茨试验等确定的辐射等中心上投射。在这项研究中,开发了一种安装在沙发上的验证装置,可以同时评估室内所有激光的对准,包括水平和垂直方向。该装置具有同时进行光/辐射场一致性测试和温斯顿-卢茨测试的功能。本报告的目的是介绍两个测试的验证程序,使用新开发的软件和设备,并介绍室内激光器的调谐流程。并将所开发软件的分析精度与商业软件进行了比较。方法:首先,在器件中心表面用钨标记评价光/辐射场。接下来,在将设备正面和侧面的长雕刻线与室内激光器对齐后,使用设备中心的钨球进行温斯顿-卢茨测试。使用开发的具有报告功能的软件对采集到的图像进行综合分析。此外,将该Winston-Lutz检验结果与商业软件的结果进行了比较。结果:利用研制的仪器和软件对一系列光/辐射场重合试验和温斯顿-卢茨试验进行了分析。使用软件的报告功能可以方便地确认结果。对于Winston-Lutz检验的结果,所开发软件与市售软件的分析差异大部分在像素尺寸(0.22 mm)以内。讨论:由于辐射场的准确性会影响温斯顿-卢茨试验的结果,因此提出的提前进行光/辐射符合场试验的程序有助于解释温斯顿-卢茨试验的误差。基于Winston-Lutz测试的结果,我们能够演示所有室内激光器的调谐流程,包括水平和垂直方向。结论:我们开发了一种安装在沙发上的验证装置和软件,可以评估用于放疗患者定位的室内激光的光/辐射一致性现场测试和对准,包括水平和垂直度,并报道了其实用性。所开发软件的分析精度与市售软件相当。该装置的使用和开发的软件不仅可以有效地调整室内激光的水平和垂直方向,而且可以准确地反映温斯顿-卢茨测试的结果。
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