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Quantitative Analysis of Contrast to Noise Ratio Using a Phase Contrast X-ray Imaging Prototype

机译:使用相衬X射线成像原型对对比度进行定量分析

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摘要

The purpose of this study was to determine the Contrast to Noise Ratio (CNR) of the x-ray images taken with the phase contrast imaging mode and compare them with the CNR of the images taken under the conventional mode. For each mode, three images were taken under three exposure conditions of 100 kVp (2.8mAs), 120 kVp (1.9mAs) and 140kVp (1.42mAs). A 1.61cm thick contrast detail phantom was used as an imaging object. For phase contrast, the source to image detector distance (SID) was 182.88 cm and the source to object (SOD) distance was 73.15 cm. The SOD was the same as SID in the conventional imaging mode. A computed radiography (CR) plate was used as a detector and the output CR images were converted to linear form in relation with the incident x-ray exposure. To calculate CNR, an image processing software was used to determine the mean pixel value and the standard deviation of the pixels in the region of interest (ROI) and in the nearby background around ROI. At any given exposure condition investigated in this study, the CNR values for the phase contrast images were better as compared to the corresponding conventional mode images. The superior image quality in terms of CNR is contributed by the phase-shifts resulted contrast, as well as the reduced scatters due to the air gap between the object and the detector.
机译:这项研究的目的是确定使用相衬成像模式拍摄的X射线图像的对比度和噪声比(CNR),并将其与常规模式下拍摄的图像的CNR进行比较。对于每种模式,在100 kVp(2.8mAs),120 kVp(1.9mAs)和140kVp(1.42mAs)的三种曝光条件下拍摄三张图像。使用1.61cm厚的对比度细节体模作为成像对象。对于相位对比,源到图像检测器的距离(SID)为182.88 cm,源到物体的距离(SOD)为73.15 cm。在常规成像模式下,SOD与SID相同。使用计算机射线照相(CR)板作为检测器,并将输出的CR图像相对于入射X射线曝光转换为线性形式。为了计算CNR,使用图像处理软件确定感兴趣区域(ROI)和ROI附近附近背景中像素的平均像素值和标准差。在本研究中研究的任何给定曝光条件下,相衬图像的CNR值均优于相应的常规模式图像。就CNR而言,出色的图像质量归因于相移产生的对比度,以及由于物体和检测器之间的气隙而减少的散射。

著录项

  • 来源
    《Biophotonics and immune responses VIII》|2013年|85820H.1-85820H.6|共6页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Center for Bioengineering and School of Electrical and Computer Engineering University of Oklahoma;

    Center for Bioengineering and School of Electrical and Computer Engineering University of Oklahoma;

    Center for Bioengineering and School of Electrical and Computer Engineering University of Oklahoma;

    Center for Bioengineering and School of Electrical and Computer Engineering University of Oklahoma;

    Department of Engineering and Physics, University of Central Oklahoma;

    Department of Radiology, University of Alabama at Birmingham;

    Center for Bioengineering and School of Electrical and Computer Engineering University of Oklahoma;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Contrast to Noise Ratio; Phase Contrast;

    机译:对比噪声比;相衬;

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