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Volumetric sampling, analysis, and visualization in spiral CT.

机译:螺旋CT的体积采样,分析和可视化。

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摘要

Efforts to improve the clinical utility of medical data are usually complicated by the limited resolution available in the dataset, and by artifacts in the reconstructed images. The introduction of spiral CT has enabled an increased rate of coverage and the potential for improved longitudinal resolution in the volume. Both of these factors point to the need for improved visualization techniques to handle the increased amount of data, and to take advantage of the improved resolution in the volume.; In this thesis, we present an analysis of volumetric sampling in spiral CT to investigate, in particular, the artifacts caused by inadequate sampling in the data acquisition process. We propose a mathematical model to describe the three-dimensional (3D) sampling scheme in spiral CT. Based on this model, we propose a theory to explain the spatially varying longitudinal aliasing in spiral CT. This longitudinal aliasing is negligible at the isocenter, but can become significant at locations far from the isocenter. In addition, the longitudinal aliasing in spiral CT is a function of the table speed, and the helical interpolation algorithm used in the reconstruction process.; We investigate the effects of this spatially varying longitudinal aliasing on longitudinal resolution. Our results show that the distortions caused by the aliasing can severely affect longitudinal resolution at locations far from the isocenter. This effect is more pronounced at higher pitch values. We propose a new measure to quantify the effects of aliasing on resolution, the contrast-to-aliased-noise ratio (CNaR), which treats aliasing as a signal dependent and additive noise. CN aR values are useful for estimating the amount of distortion present for different sets of scanning parameters and at different transaxial positions. The impact of the distorted longitudinal resolution on clinical applications such as lesion detection was found to be diagnostically significant.; A novel volume visualization technique, the sliding-thin-slab volume visualization (STS-VV), is also proposed. This visualization approach allows interactive exploration of complex medical volumes by rendering thin slabs at orientations and positions within the volume specified by the user. This approach renders views of anatomical structures without occlusions and with improved conspicuity.
机译:通常,由于数据集中可用的有限分辨率以及重建图像中的伪影,提高医疗数据临床效用的努力通常会变得很复杂。螺旋CT的引入提高了覆盖率,并有可能改善体积的纵向分辨率。这两个因素都表明需要改进的可视化技术来处理增加的数据量,并利用提高的体积分辨率。在本文中,我们对螺旋CT的体积采样进行了分析,以研究尤其是由数据采集过程中采样不足引起的伪影。我们提出了一个数学模型来描述螺旋CT中的三维(3D)采样方案。基于此模型,我们提出了一种理论来解释螺旋CT中空间变化的纵向混叠现象。这种纵向混叠在等角点处可以忽略不计,但在远离等角点的位置上可能变得很明显。此外,螺旋CT的纵向混叠是工作台速度的函数,并且是重建过程中使用的螺旋插值算法。我们调查这种空间变化的纵向混叠对纵向分辨率的影响。我们的结果表明,由混叠引起的变形会严重影响远离等角点位置的纵向分辨率。在较高的音调值下,这种效果更加明显。我们提出了一种新方法来量化混叠对分辨率的影响,即对比度与混叠噪声比( CN a R ),该方法将混叠视为信号依赖和附加噪声。 CN a R 值可用于估计在不同的扫描参数集和不同的跨轴位置处出现的变形量。发现扭曲的纵向分辨率对临床应用(如病变检测)的影响具有诊断意义。还提出了一种新颖的体积可视化技术,即滑动薄板体积可视化(STS-VV)。这种可视化方法允许通过在用户指定的体积内的方向和位置绘制薄板来交互式探索复杂的医学体积。这种方法可呈现出无遮挡且具有明显醒目的解剖结构的视图。

著录项

  • 作者

    Yen, Shin Yi.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Electronics and Electrical.; Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;生物医学工程;
  • 关键词

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