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首页> 外文期刊>Journal of applied clinical medical physics / >Evaluation and mitigation of potential errors in radiochromic film dosimetry due to film curvature at scanning
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Evaluation and mitigation of potential errors in radiochromic film dosimetry due to film curvature at scanning

机译:评估和缓解由于扫描时胶片弯曲而导致的变色胶片剂量测定中的潜在误差

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This work considers a previously overlooked uncertainty present in film dosimetry which results from moderate curvature of films during the scanning process. Small film samples are particularly susceptible to film curling which may be undetected or deemed insignificant. In this study, we consider test cases with controlled induced curvature of film and with film raised horizontally above the scanner plate. We also evaluate the difference in scans of a film irradiated with a typical brachytherapy dose distribution with the film naturally curved and with the film held flat on the scanner. Typical naturally occurring curvature of film at scanning, giving rise to a maximum height 1 to 2 mm above the scan plane, may introduce dose errors of 1% to 4%, and considerably reduce gamma evaluation passing rates when comparing film-measured doses with treatment planning system-calculated dose distributions, a common application of film dosimetry in radiotherapy. The use of a triple-channel dosimetry algorithm appeared to mitigate the error due to film curvature compared to conventional single-channel film dosimetry. The change in pixel value and calibrated reported dose with film curling or height above the scanner plate may be due to variations in illumination characteristics, optical disturbances, or a Callier-type effect. There is a clear requirement for physically flat films at scanning to avoid the introduction of a substantial error source in film dosimetry. Particularly for small film samples, a compression glass plate above the film is recommended to ensure flat-film scanning. This effect has been overlooked to date in the literature.PACS numbers: 87.55.Qr, 87.56.bg, 87.55.km
机译:这项工作考虑了以前在胶片剂量测定中被忽略的不确定性,这是由于在扫描过程中胶片的曲率中等而导致的。小薄膜样本特别容易发生薄膜卷曲,这种卷曲可能未被发现或被认为微不足道。在这项研究中,我们考虑了具有受控感应胶片弯曲度和胶片在扫描仪板上方水平举起的测试案例。我们还评估了用典型的近距离放射治疗剂量分布照射的胶片的扫描结果的差异,该胶片自然弯曲,并且胶片平放在扫描仪上。胶片在扫描时自然产生的典型曲率,导致最大高度超出扫描平面1至2 mm,可能会引入1%至4%的剂量误差,并且在将胶片测量的剂量与治疗进行比较时,会大大降低伽玛评估合格率计划系统计算的剂量分布,这是胶片剂量法在放射治疗中的常见应用。与传统的单通道薄膜剂量法相比,使用三通道剂量法算法似乎可以减轻由于薄膜曲率引起的误差。像素值和校准的报告剂量随胶片卷曲或扫描仪板上方的高度而变化的原因可能是照明特性,光学干扰或Callier型效应的变化。扫描时对物理平坦的薄膜有明确的要求,以避免在薄膜剂量测定中引入大量的误差源。特别是对于小胶片样品,建议在胶片上方使用压缩玻璃板以确保进行平膜扫描。迄今为止,这种影响在文献中都被忽略了.PACS号码:87.55.Qr,87.56.bg,87.55.km

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