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消除单网格相衬 X 射线成像中的伪影以提高图像质量。

Eliminating artifacts in single-grid phase-contrast x-ray imaging for improving image quality.

机构信息

Department of Radiation Convergence Engineering, Yonsei University, Wonju, 26493, Republic of Korea.

Department of Radiation Convergence Engineering, Yonsei University, Wonju, 26493, Republic of Korea.

出版信息

Comput Biol Med. 2018 Jun 1;97:74-82. doi: 10.1016/j.compbiomed.2018.04.013. Epub 2018 Apr 24.

DOI:10.1016/j.compbiomed.2018.04.013
PMID:29709716
Abstract

In this study, we propose a modification to a single-grid phase-contrast x-ray imaging (PCXI) system using a Fourier domain analysis technique to extract absorption, scattering, and differential phase-contrast images. The proposed modification is to rotate the x-ray grid in the image plane to achieve spectral separation between the desired information and the moiré artifact, which is introduced by the superposition of the periodic image of the grid shadow and the periodic sampling by the detector. In addition, we performed some system optimization by adjusting distances between source, object, grid, and detector to further improve image quality. This optimization aimed to increase the spectral spacing between the primary spectrum (lower frequency) and the harmonics of the spectrum (higher frequency) used to extract the various image contrasts. The table-top setup used in the experiment consisted of a focused-linear grid with a 200-lines/inch strip density, a microfocus x-ray tube with a 55-μm focal spot size, and a CMOS flat-panel detector with a 49.5-μm pixel size. The x-ray grid was rotated at 27.8° with respect to the detector and the sample was placed as close as possible to the x-ray tube. Our results indicated that the proposed method effectively eliminated the PCXI artifacts, thus improving image quality.

摘要

在这项研究中,我们提出了一种对单网格相衬 X 射线成像(PCXI)系统的修改,使用傅里叶域分析技术来提取吸收、散射和差分相衬图像。所提出的修改是旋转图像平面中的 X 射线网格,以实现所需信息与莫尔伪影之间的光谱分离,莫尔伪影是由网格阴影的周期性图像与探测器的周期性采样叠加引起的。此外,我们通过调整源、物、网格和探测器之间的距离进行了一些系统优化,以进一步提高图像质量。这种优化旨在增加用于提取各种图像对比度的原始光谱(低频)和光谱的谐波(高频)之间的光谱间隔。实验中使用的台式设置包括具有 200 线/英寸线密度的聚焦线性网格、具有 55μm 焦点尺寸的微焦点 X 射线管和具有 49.5μm 像素尺寸的 CMOS 平板探测器。X 射线网格相对于探测器旋转了 27.8°,并且样品尽可能靠近 X 射线管放置。我们的结果表明,所提出的方法有效地消除了 PCXI 伪影,从而提高了图像质量。

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