首页> 外文会议>Physic of Medical Imaging pt.2; Progress in Biomedical Optics and Imaging; vol.6 no.22 >Scanning Equalization Digital Radiography (SEDR)- effects of exposure equalization on image processing
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Scanning Equalization Digital Radiography (SEDR)- effects of exposure equalization on image processing

机译:扫描均衡数字射线照相(SEDR)-曝光均衡对图像处理的影响

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Digital radiographs are often processed prior to printing or display. The algorithm used is generally a combination of contrast and edge enhancement applied in a spatially varying way. However, such enhancement often resulted in objectionable noise level in heavily attenuating regions, which may compromise the low contrast performance. We are developing and investigating a Scan Equalization Digital Radiography (SEDR) technique with which the transmitted x-ray exposure falling on the detector would be equalized and the image SNRs would be made more uniform. In this study, we simulated exposure equalization by acquiring a series of digital radiographs with incrementing mAs' (0.25, 0.5, 1, 2, 4, 8) and then adding them with binary weighting factors to achieve equalized exposures over various regions of the image. The exposure-equalized image was then processed with two algorithms: local window/level optimization or edge enhancement using unsharp masking. The processed images with and without exposure equalization were then examined and compared with each other. For quantitative comparison, identically acquired images were used to obtain two sets of equalized and processed images. These two sets of images were subtracted from each other to generate a map of normalized noise for comparison. It is found that exposure equalization resulted in more uniform SNRs in both raw and processed images. Thus the noise levels in heavily attenuated regions were kept low and had less objectionable appearance for visualization of low contrast objects.
机译:数字射线照片通常在打印或显示之前进行处理。所使用的算法通常是以空间变化方式应用的对比度和边缘增强的组合。但是,这种增强通常会在严重衰减的区域中产生令人讨厌的噪声水平,这可能会损害低对比度性能。我们正在开发和研究一种扫描均衡数字射线照相(SEDR)技术,利用该技术可以使落在检测器上的透射X射线曝光量相等,并使图像SNR更加均匀。在这项研究中,我们通过获取一系列具有递增mAs'(0.25、0.5、1、2、4、8)的数字射线照片,然后将它们与二进制加权因子相加,以在图像的各个区域上实现均衡的曝光,从而模拟了曝光均衡。 。然后用两种算法处理曝光均衡的图像:局部窗口/级别优化或使用锐化蒙版的边缘增强。然后检查带有和不带有曝光均衡的已处理图像,并将它们彼此进行比较。为了进行定量比较,使用相同采集的图像获得两组经过均衡和处理的图像。这两组图像彼此相减,以生成归一化噪声图以进行比较。发现曝光均衡导致原始图像和已处理图像中的SNR更加均匀。因此,在严重衰减的区域中的噪声水平保持较低,并且对于低对比度对象的可视化具有较少令人反感的外观。

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