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Investigation of the feasibility of a simple method for verifying the motion of a binary multileaf collimator synchronized with the rotation of the gantry for helical tomotherapy

机译:研究一种简单的方法来验证双螺旋多叶准直仪的运动与龙门架旋转同步进行螺旋断层扫描的可行性

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In this paper, we suggest a new method for verifying the motion of a binary multileaf collimator (MLC) in helical tomotherapy. For this we used a combination of a cylindrical scintillator and a general‐purpose camcorder. The camcorder records the light from the scintillator following photon irradiation, which we use to track the motion of the binary MLC. The purpose of this study is to demonstrate the feasibility of this method as a binary MLC quality assurance (QA) tool. First, the verification was performed using a simple binary MLC pattern with a constant leaf open time; secondly, verification using the binary MLC pattern used in a clinical setting was also performed. Sinograms of simple binary MLC patterns, in which leaves that were open were detected as “open” from the measured light, define the sensitivity which, in this case, was 1.000. On the other hand, the specificity, which gives the fraction of closed leaves detected as “closed”, was 0.919. The leaf open error identified by our method was . The 68.6% of observed leaves were performed within relative error. The leaf open error was expressed by the relative errors calculated on the sinogram. In the clinical binary MLC pattern, the sensitivity and specificity were 0.994 and 0.997, respectively. The measurement could be performed with leaf open error. The 77.5% of observed leaves were performed within relative error. With this method, we can easily verify the motion of the binary MLC, and the measurement unit developed was found to be an effective QA tool. PACS numbers: 87.56.Fc, 87.56.nk
机译:在本文中,我们提出了一种新的方法来验证螺旋断层扫描中二元多叶准直器(MLC)的运动。为此,我们结合使用了圆柱形闪烁体和通用便携式摄录机。摄录一体机记录光子辐照后来自闪烁体的光,我们用它来跟踪二进制MLC的运动。本研究的目的是证明该方法作为二进制MLC质量保证(QA)工具的可行性。首先,使用具有恒定叶片打开时间的简单二进制MLC模式进行验证;其次,还使用临床环境中使用的二进制MLC模式进行了验证。简单的二元MLC模式的正弦图(从测量的光中检测出打开的叶子为“打开”)定义了灵敏度(在这种情况下为1.000)。另一方面,给出检测为“闭合”的闭合叶片分数的特异性为0.919。通过我们的方法确定的开叶错误为。 68.6%的观察叶片在相对误差范围内进行。叶片张开误差由在正弦图上计算的相对误差表示。在临床二元MLC模式中,敏感性和特异性分别为0.994和0.997。可以在叶片张开错误的情况下进行测量。 77.5%的观察叶片在相对误差范围内进行。使用这种方法,我们可以轻松地验证二进制MLC的运动,并且发现开发的测量单元是一种有效的QA工具。 PACS编号:87.56.Fc,87.56.nk

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