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首页> 外文期刊>Radiation Physics and Chemistry >Quantifying dose-creep for Skull and chest radiography using dose area product and entrance surface dose: Phantom study
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Quantifying dose-creep for Skull and chest radiography using dose area product and entrance surface dose: Phantom study

机译:使用剂量区域产品和入口表面剂量量化颅骨和胸部射线照相的剂量蠕变:幻影研究

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摘要

Digital radiography allows for image manipulation, giving radiographers the ability to adjust the grey level of the image using latitude-algorithm. In doing such, patients receiving unnecessary radiation-dose often goes undetected. The aim of present study has been to quantify dose-creep using dose area product (DAP) and entrance surface dose (ESD) for skull and chest exams using phantoms. Furthermore, to investigate possible correlation between DAP and ESD. Adult anthropomorphic phantoms were used to produce a series of anterior-posterior (AP) and lateral (LAT) skull and chest images varying the mAs to yield optimal and overexposed images for each projection. Thermoluminescent dosimeter (TLD) was placed at the surface of the centered phantom to measure the ESD. DAP values were gathered and correlated with ESD values using Spearman's correlation coefficient test while Wilcoxon-test was used to calculate the statistical difference. Dose-creep was calculated as the percentage difference between optimum and over exposure results. The highest estimated dose-creep of (51%) was demonstrated for chest AP projection as calculated from DAP values. Using Spearman's correlation, a significant strong positive correlation was revealed for DAP and ESD optimum (r = 0.916, p = 0.0006) and overexposure (r = 0.8992, p = 0.0009), respectively. Dose-creep can be considerably high raising the need for thorough investigations and society awareness.
机译:数字射线照相允许图像操纵,使放射照相器使用纬度算法来调整图像的灰度级的能力。在这样做时,接受不必要的辐射剂量的患者通常未被发现。目前研究的目的是使用剂量区域产品(DAP)和使用幽灵的颅骨和胸部检查来量化剂量蠕变和入射表面剂量(ESD)。此外,研究DAP和ESD之间的可能相关性。成年人拟蒽晶模型用于产生一系列前后(AP)和横向(LAT)颅骨和胸部图像,改变MAS,以产生每个突起的最佳和过度曝光的图像。将热量剂量计(TLD)放置在中心模型的表面以测量ESD。使用Spearman的相关系数测试收集和与ESD值收集和相关的DAP值,而Wilcoxon-Test用于计算统计差异。剂量蠕变被计算为最佳和暴露结果之间的百分比差异。从DAP值计算的胸部AP投影证明了(51%)的最高估计剂量蠕变。使用Spearman的相关性,对于DAP和ESD,显露出显着的强大的正相关(r = 0.916,p = 0.0006)和过度曝光(r = 0.8992,p = 0.0009)。剂量蠕变可以很高,提高彻底调查和社会意识的需要。

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