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THE BENEFIT OF ACCOUNTING FOR DQE VARIATIONS IN SIMULATED DOSE REDUCTION OF DIGITAL RADIOGRAPHIC SYSTEMS

机译:数字放射线照相系统模拟剂量减少中的DQE变差会计处理的好处

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摘要

Adding noise to clinical radiographs to simulate dose reduction can be used to investigate the relationship between dose level and clinical image quality without exposing patients to additional radiation. The purpose of the present paper was to examine the benefits of using a method that accounts for detective quantum efficiency (DQE) variations that may occur in different dose ranges in the simulated dose reduction process. A method initially intended for simulated dose reduction in tomosynthesis was applied to extremely low-dose posterioanterior radiographs of an anthropomorphic chest phantom, selected from a group of projection images included in a tomosynthesis examination and compared with a previous method that do not account for DQE variations. A comparison of images simulated to be collected at a lower dose level (73 % of the original dose level) and images actually collected at this lower dose level revealed that the error in the integrated normalised noise power spectrum was smaller than 4 % for the method that accounts for DQE variations in the simulated dose reduction, whereas the error was larger than 20 % for the previous method. This indicates that an increased validity in dose reduction simulation of digital radiographic systems is obtained with a method accounting for DQE variations.
机译:在临床放射照片中增加噪声以模拟剂量减少可用于研究剂量水平与临床图像质量之间的关系,而无需使患者受到额外的辐射。本文的目的是研究使用一种方法解决模拟剂量减少过程中不同剂量范围内可能发生的探测量子效率(DQE)变化的好处。最初拟用于层析合成的模拟剂量减少的方法已应用于拟人化的人体模型的极低剂量后验影像学,该影像选自层析合成检查中的一组投影图像,并与先前的方法进行了比较,该方法不考虑DQE的变化。比较模拟以较低剂量水平(原始剂量水平的73%)收集的图像和实际以较低剂量水平收集的图像,发现该方法的积分归一化噪声功率谱中的误差小于4%这是模拟剂量减少中DQE变化的原因,而先前方法的误差大于20%。这表明,通过考虑DQE变化的方法,可以提高数字射线照相系统剂量减少模拟的有效性。

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  • 来源
    《Radiation Protection Dosimetry》 |2010年第3期|P.57-61|共5页
  • 作者单位

    Department of Medical Physics and Biomedical Engineering, Sahlgrenska University Hospital, SE-413 45 Gothenburg, Sweden Department of Radiation Physics, Institute of Clinical Sciences, Sahlgrenska Academy, University of Gothenburg, SE-413 45 Gothenburg, Sweden;

    rnDepartment of Medical Physics and Biomedical Engineering, Sahlgrenska University Hospital, SE-413 45 Gothenburg, Sweden Department of Radiation Physics, Institute of Clinical Sciences, Sahlgrenska Academy, University of Gothenburg, SE-413 45 Gothenburg, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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