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首页> 外文期刊>Journal of Applied Physics >Image segmentation of nanoscale Zernike phase contrast X-ray computed tomography images
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Image segmentation of nanoscale Zernike phase contrast X-ray computed tomography images

机译:纳米Zernike相衬X射线计算机断层扫描图像的图像分割

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摘要

Zernike phase contrast is a useful technique for nanoscale X-ray computed tomography (CT) imaging of materials with a low X-ray absorption coefficient. It enhances the image contrast by phase shifting X-ray waves to create changes in amplitude. However, it creates artifacts that hinder the use of traditional image segmentation techniques. We propose an image restoration method that models the X-ray phase contrast optics and the three-dimensional image reconstruction method. We generate artifact-free images through an optimization problem that inverts this model. Though similar approaches have been used for Zernike phase contrast in visible light microscopy, this optimization employs an effective edge detection method tailored to handle Zernike phase contrast artifacts. We characterize this optics-based restoration method by removing the artifacts in and thresholding multiple Zernike phase contrast X-ray CT images to produce segmented results that are consistent with the physical specimens. We quantitatively evaluate and compare our method to other segmentation techniques to demonstrate its high accuracy.
机译:Zernike相衬是X射线吸收系数低的材料的纳米级X射线计算机断层扫描(CT)成像的有用技术。它通过相移X射线波来产生振幅变化,从而增强了图像对比度。但是,它会产生伪影,妨碍使用传统的图像分割技术。我们提出了一种图像恢复方法,该方法可以对X射线相衬光学器件和三维图像重建方法进行建模。我们通过将模型反转的优化问题来生成无伪影的图像。尽管在可见光显微镜中已将相似的方法用于Zernike相衬,但此优化采用了为处理Zernike相衬伪影而定制的有效边缘检测方法。我们对这种基于光学的修复方法进行了表征,方法是去除多个Zernike相衬X射线CT图像中的伪像并对其进行阈值处理,以产生与物理样本一致的分段结果。我们定量评估和比较我们的方法与其他分割技术,以证明其高精度。

著录项

  • 来源
    《Journal of Applied Physics 》 |2015年第18期| 183102.1-183102.10| 共10页
  • 作者单位

    Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA;

    Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA;

    Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA;

    Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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