首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The suitable dose range for the calibration of EBT2 film by the PDD method with a comparison of two curve fitting algorithms
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The suitable dose range for the calibration of EBT2 film by the PDD method with a comparison of two curve fitting algorithms

机译:通过PDD方法对EBT2膜进行校准的合适剂量范围,并比较了两种曲线拟合算法

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摘要

EBT2 film is a convenient dosimetry quality-assurance (QA) tool with high 2D dosimetry resolution and a self-development property for use in verifications of radiation therapy treatment planning and special projects; however, the user will suffer from a relatively higher degree of uncertainty (more than ± 6% by Hartmann et al.), and the trouble of cutting one piece of film into small pieces and then reintegrating them each time. To prevent this tedious cutting work, and save calibration time and budget, a dose range analysis is presented in this study for EBT2 film calibration using the Percentage-Depth-Dose (PDD) method. Different combinations of the three dose ranges, 9-26 cGy, 33-97 cGy and 109-320 cGy, with two types of curve fitting algorithms, film pixel values and net optical densities converting into doses, were tested and compared. With the lowest error and acceptable inaccuracy of less than 3 cGy for the clinical dose range (9-320 cGy), a single film calibrated by the net optical density algorithm with the dose range 109-320 cGy was suggested for routine calibration.
机译:EBT2胶片是一种方便的剂量学质量保证(QA)工具,具有较高的2D剂量学分辨率和自显影性能,可用于验证放射治疗计划和特殊项目;然而,用户将遭受相对较高的不确定性(Hartmann等人的不确定度超过±6%),以及将一片胶片切成小块然后每次重新整合的麻烦。为避免繁琐的切割工作,并节省校准时间和预算,本研究中使用百分深度-剂量-剂量(PDD)方法对EBT2膜进行了剂量范围分析。测试并比较了三种剂量范围(9-26 cGy,33-97 cGy和109-320 cGy)的不同组合以及两种类型的曲线拟合算法,即胶片像素值和净光密度转换成剂量。对于临床剂量范围(9-320 cGy),具有最低的误差和小于3 cGy的可接受误差,建议通过净光密度算法用剂量范围109-320 cGy校准的单层膜用于常规校准。

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