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Technical Note: Quality assurance and relative dosimetry testing of a 60 60 Co total body irradiator using optical imaging

机译:技术说明:使用光学成像的60 60 60 CO总体辐射器的质量保证和相对的剂量测定测试

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Purpose The aim of this study was to create an optical imaging‐based system for quality assurance (QA) testing of a dedicated Co‐60 total body irradiation (TBI) machine. Our goal is to streamline the QA process by minimizing the amount time necessary for tests such as verification of dose rate and field homogeneity. Methods Plastic scintillating rods were placed directly on the patient treatment couch of a dedicated TBI 60 Co irradiator. A tripod‐mounted intensified camera was placed directly adjacent to the couch. Images were acquired over a 30‐s period once the cobalt source was fully exposed. Real‐time image filtering was used; cumulative images were flatfield corrected as well as background and darkfield subtracted. Scintillators were used to measure light‐radiation field correspondence, dose rate, field homogeneity, and symmetry. Dose rate effects were measured by modifying the height of the treatment couch and scintillator response was compared to ionization chamber (IC) measurements. Optically stimulated luminesce detector (OSLD) used as reference dosimeters during field symmetry and homogeneity testing. Results The scintillator‐based system accurately reported changes in dose rate. When comparing normalized output values for IC vs scintillators over a range of source‐to‐surface distances, a linear relationship (R 2 ?=?0.99) was observed. Normalized scintillator signal matched OSLD measurements with 1.5% difference during field homogeneity and symmetry testing. Beam symmetry across both axes of the field was within 2%. The light field was found to correspond to 90?±?3% of the isodose maximum along the longitudinal and latitudinal axis, respectively. Scintillator imaging output results using a single image stack requiring no postexposure processing (needed for OSLD) or repeat manual measurements (needed for IC). Conclusion Imaging of scintillation light emission from plastic rods is a viable and efficient method for carrying out TBI 60 Co irradiator QA. We have shown that this technique can accurately measure field homogeneity, symmetry, light‐radiation field correspondence, and dose rate effects.
机译:目的本研究的目的是创造一种基于光学成像的系统,用于专用CO-60总体照射(TBI)机器的质量保证(QA)测试。我们的目标是通过最大限度地减少测试所需的量时间来简化QA过程,例如验证剂量率和域同质性的验证。方法将塑料闪烁棒直接放在专用TBI 60 CO辐照器的患者处理沙发上。三脚架安装的强化摄像头直接靠近沙发。一旦钴​​源完全暴露,就会在30-S期间获得图像。使用实时图像滤波;累积图像是纠正的平面以及背景和暗田减去。闪烁体用于测量光辐射场对应,剂量率,场均匀性和对称性。通过改变处理沙发的高度和闪烁体响应进行测量剂量率效应与电离室(IC)测量进行比较。光学刺激的发光探测器(OSLD)在场对称性和均匀性测试期间用作参考剂量计。结果基于闪烁体的系统准确地报告了剂量率的变化。当在一系列源区距离范围内比较IC VS闪烁体的归一化输出值时,观察到线性关系(R 2?= 0.99)。归一化的闪烁体信号匹配OSLD测量,在现场同质性和对称性测试期间差异差异。该领域两轴的光束对称在2%以内。发现光场分别对应于沿纵向和纬度轴线的90°±3%的体上的体积。闪烁体成像输出结果使用单个图像堆栈不需要未完成后曝光处理(OSLD所需)或重复手动测量(IC所需)。结论塑料棒闪烁发光的成像是一种用于执行TBI 60 CO辐照器QA的可行有效的方法。我们已经表明,该技术可以准确地测量场均匀性,对称性,光辐射场对应和剂量率效应。

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