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Reducing Non-uniformity Error of Radiochromic Film in The Diagnostic Range by Ultraviolet Exposure: Preliminary Study

机译:通过紫外线减少诊断范围内的放射性变色膜的不均匀性误差的初步研究

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Thickness irregularity of active layer is made to express density irregularity. True data by the X-rays are extracted by exposing Ultraviolet (UV) rays that prohibited exposure are exposed for radiochromic film (RF). When UV is exposed, the density irregularity is corrected. In addition, RF is initialized, thereby improving of data acquisition.GAFCHROMIC EBT (GAF-EBT) film was exposed to UV light at 360 nm twice with a 2 hour interval. The distance from the UV tube to the GAF-EBT film was 165 cm. The GAF-EBT films were scanned after the first and second UV exposure, using a flat bed scanner. Analyses were performed by the density profile curve of the short and long axes of the GAF-EBT.The density irregularity of the active layer of the film was corrected to 2.19 ± 0.49 (pixel value) by subtracting the density obtained with the first UV exposure from that with the second UV exposure of GAF-EBT on the short axis. On the long axis, the density irregularity of the active layer of GAF-EBT was corrected to 2.67 ± 0.65 (pixel value).Uniform UV exposure data was identified. The measurement precision of the GAF-EBT film and its usefulness are improved by this method.
机译:使活性层的厚度不均表现为浓度不均。 X射线的真实数据是通过将禁止曝光的紫外线(UV)暴露于放射致变色胶片(RF)中而提取的。暴露于紫外线时,可以校正浓度不均。另外,RF被初始化,从而改善了数据获取。 将GAFCHROMIC EBT(GAF-EBT)膜以360 nm的波长两次以2小时的间隔暴露于紫外线下。从紫外线管到GAF-EBT膜的距离为165厘米。在第一次和第二次紫外线照射后,使用平板扫描仪扫描GAF-EBT膜。通过GAF-EBT的短轴和长轴的密度分布曲线进行分析。 通过从短轴上用GAF-EBT的第二次UV曝光减去第一次UV曝光获得的密度,将膜的活性层的密度不规则度校正为2.19±0.49(像素值)。在长轴上,将GAF-EBT的活性层的浓度不均校正为2.67±0.65(像素值)。 确定了均匀的紫外线暴露数据。通过这种方法提高了GAF-EBT膜的测量精度及其实用性。

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