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Verification of light & radiation field coincidence quality assurance for radiation therapy by using a-Se based DR system

机译:通过使用基于a-Se的DR系统验证放射治疗的光与辐射场重合质量保证

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Currently, the American Association of Physicists in Medicine (AAPM) recommends measuring the surface field size once a week by using an analog film in order to verify light and radiation field coincidence in the Quality Assurance (QA) of radiotherapy. However, the use of the film does not allow for a quantitative method of evaluation, and measuring the light field with radiation field detectors in a 2D array is difficult. Therefore, we used an amorphous-Se (a-Se) digital radiation detection system to measure the light and radiation fields simultaneously for a quantitative QA system, and the feasibility of using such a system was confirmed by ensuring the coincidence of the light and the radiation field measurements. The characteristics of the analog film and the a-Se digital radiation detection system were compared by delivering to each doses of 100, 10 monitor units(MU) of radiation at a rate of 400 MU/min to a radiation field 100 x 100 mm(2) in size from a 100 cm source-surface distance (SSD). A 0.5 mm to 0.6 mm difference was measured in the X-axis, and a 0.3 mm difference was measured in the Y-axis. The difference in the measurements of the coincidence of light and the radiation field was less than 0.3 mm, which is relatively insignificant. These results indicate that the use of an a-Se digital radiation detection system is adequate for quality assurance of radiotherapy using light and radiation field coincidence. In addition, the experiment is considered to have provided valuable results in that the a-Se based digital radiation detection system enables simple and accurate QA for clinical radiation therapy by assessing the coincidence in the alignment of the light and the radiation fields.
机译:当前,美国医学物理学家协会(AAPM)建议使用模拟胶片每周测量一次表面场大小,以验证放射治疗质量保证(QA)中的光场和辐射场重合。然而,使用该膜不允许采用定量的评估方法,并且难以用2D阵列中的辐射场检测器测量光场。因此,我们使用非晶态硒(a-Se)数字辐射检测系统来同时测量定量QA系统的光场和辐射场,并通过确保光和光的重合性来确认使用这种系统的可行性。辐射场测量。比较了模拟胶片和a-Se数字辐射检测系统的特性,方法是将100个剂量的10个监测单元(MU)以400 MU / min的速率传输到100 x 100 mm的辐射场,从而比较模拟胶片和a-Se数字辐射检测系统的特性。 2)尺寸为距源表面距离100厘米(SSD)。在X轴上测得的差为0.5mm至0.6mm,在Y轴上测得的差为0.3mm。光和辐射场的重合度的测量差小于0.3mm,这是相对不明显的。这些结果表明,使用a-Se数字辐射检测系统足以满足使用光和辐射场重合进行放射治疗的质量保证。另外,该实验被认为已提供了有价值的结果,因为基于a-Se的数字放射检测系统通过评估光和放射线的对准一致性,可以对临床放射治疗进行简单而准确的质量保证。

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