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Plate-specific gain map correction for the improvement of detective quantum efficiency in computed radiography.

机译:特定于板的增益图校正,用于提高计算机射线照相中的探测量子效率。

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摘要

The purpose of this work is to improve the NPS, and thus DQE, of CR images by correcting for pixel-to-pixel gain variations specific to each plate. Ten high-exposure open field images were taken with an RQA5 spectrum, with a sixth generation CR plate suspended in air without a cassette. Image values were converted to exposure, the plates registered using fiducial dots on the plate, the ten images averaged, and then high-pass filtered to remove low frequency contributions from field inhomogeneity. A gain-map was then produced by converting all pixel values in the average into fractions with mean of one. The resultant gain-map of the plate was used to normalize subsequent single images to correct for pixel-to-pixel gain fluctuation. The normalized NPS (NNPS) for all images was calculated both with and without the gain-map correction. The NNPS with correction showed improvement over the non-corrected case over the range of frequencies from 0.15 -- 2.5 mm-1. At high exposure (40 mR), NNPS was 50-90% better with gain-map correction than without. A small further improvement in NNPS was seen from careful registering of the gain-map with subsequent images using small fiducial dots, because of slight misregistration during scanning. CR devices have not traditionally employed gain-map corrections common with DR detectors because of the multiplicity of plates used with each reader. This study demonstrates that a simple gain-map can be used to correct for the fixed-pattern noise and thus improve the DQE of CR imaging. Such a method could easily be implemented by manufacturers because each plate has a unique bar code and the gain-map could be stored for retrieval after plate reading. These experiments indicated that an improvement in NPS (and hence, DQE) is possible, depending on exposure level, over all frequencies with this technique.
机译:这项工作的目的是通过校正特定于每个板的像素到像素增益变化来改善CR图像的NPS,从而改善DQE。用RQA5光谱拍摄了十张高曝光率的野外图像,其中第六代CR板悬挂在空气中而没有暗盒。将图像值转换为曝光值,使用平板上的基准点对平板进行配准,对十张图像进行平均,然后进行高通滤波以消除场不均匀性的低频影响。然后通过将平均值中的所有像素值转换为均值为1的分数来生成增益图。所得的板增益图用于对后续的单个图像进行归一化,以校正像素到像素的增益波动。在有和没有增益图校正的情况下,计算所有图像的归一化NPS(NNPS)。校正后的NNPS在0.15-2.5 mm-1的频率范围内比未校正的情况有所改善。在高曝光(40 mR)下,使用增益图校正的NNPS比不使用NNPS的要好50-90%。由于在扫描过程中轻微的重合失调,通过使用小的基准点仔细地将增益图与后续图像进行配准,可以看到NNPS的进一步改进。由于每个读取器使用的平板数量众多,CR设备传统上并未采用DR检测器常见的增益图校正。这项研究表明,可以使用简单的增益图来校正固定模式的噪声,从而改善CR成像的DQE。制造商可以很容易地实现这种方法,因为每个印版都有唯一的条形码,并且可以存储增益图以在读版后进行检索。这些实验表明,根据曝光水平,使用该技术可以提高NPS(因此提高DQE)。

著录项

  • 作者

    Schnell, Erich A.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Health Sciences Radiology.
  • 学位 M.S.
  • 年度 2010
  • 页码 46 p.
  • 总页数 46
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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