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Expansion of the 4D XCAT Phantom Library with Anatomical Texture.

机译:具有解剖纹理的4D XCAT幻像库的扩展。

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摘要

Computational phantoms are set to play an important role in imaging research. As medicine moves increasingly towards providing individualized, patient-specific care, it is imperative that simulations be completed on patient-specific anatomy, rather than a reference standard. To that end, there is need for a variety of realistic phantoms for clinical studies.;This work adds to the existing extended cardiac and torso (XCAT) adult phantom series (two phantoms based on visual human data) by building new models based on adult patient computed tomography (CT) image data. These CT datasets were obtained from Duke University's patient CT database.;Each image-set was segmented using in-house segmentation software, defining bony structures and large organs within the field of view. 3D non-uniform rational b-spline (NURBS) surfaces were fitted to the segmented data. Using the multi-channel large diffeomorphic deformation metric mapping (MC-LDDMM) network, a transform was calculated to morph an existing XCAT model to the segmented patient geometry. Fifty-eight adult XCAT models were added to the phantom library.;In addition to the expanding the XCAT library, the feasibility of incorporating texture was investigated. Currently, the XCAT phantom structures are assumed to be homogeneous. This can lead to unrealistic appearance when the phantoms are combined with imaging simulations, particularly in CT. The purpose of this project was to capture anatomical texture and test it in a simulated phantom. Image data from the aforementioned patient CT database served as the source of anatomical texture.;The images were de-noised using anisotropic diffusion. Next, several regions of interest (ROIs) were taken from the liver and lungs of CT images. Using the ROIs as a source of texture, a larger stochastic texture image-set was created using the Image Quilting algorithm.;The visual human adult male XCAT phantom was voxelized at the same resolution as the texture image. The voxels inside the liver were directly replaced by the corresponding voxels of texture. Similarly for the lung, the voxels between the existing lung bronchi/blood vessels and the lung wall were replaced by texture voxels. This procedure was performed using ten different patient CT image-sets as sources of texture.;To validate the similarity of the artificial textures to the source textures, reconstructions of the adult male XCAT phantom with added textures were compared to the clinical images via receiver operator characteristic (ROC) analysis, a two-sample t-test, equivalence test, and through comparing absolute differences between scores.;It was concluded that this framework provides a valuable tool in which anatomical texture can be incorporated into computational phantoms. It is anticipated that this step towards making many anatomically variable virtual models indicative of a patient populace and making these models more realistic will be useful in medical imaging research, especially for studies relating to image quality.
机译:计算体模将在影像研究中发挥重要作用。随着医学越来越趋向于提供个性化的,针对患者的护理,必须在针对患者的解剖结构而不是参考标准上完成模拟。为此,需要用于临床研究的各种逼真的人体模型。这项工作通过建立基于成年人的新模型,增加了现有的扩展的心脏和躯干(XCAT)成人人体模型系列(基于视觉人类数据的两个人体模型)。患者计算机断层扫描(CT)图像数据。这些CT数据集是从杜克大学的患者CT数据库获得的;使用内部分割软件对每个图像集进行了分割,从而定义了视野内的骨结构和大器官。将3D非均匀有理b样条(NURBS)曲面拟合到分段数据。使用多通道大形变变形度量映射(MC-LDDMM)网络,计算了一个转换,以将现有的XCAT模型变形为分割的患者几何形状。将58个成人XCAT模型添加到了幻影库中。除了扩展XCAT库以外,还研究了合并纹理的可行性。当前,假定XCAT幻像结构是同构的。当幻像与成像仿真结合时,尤其是在CT中,这可能导致不真实的外观。该项目的目的是捕获解剖纹理并在模拟体模中对其进行测试。来自上述患者CT数据库的图像数据用作解剖纹理的来源。使用各向异性扩散对图像进行消噪。接下来,从CT图像的肝脏和肺部获取几个感兴趣的区域(ROI)。使用ROI作为纹理的来源,使用图像lt缝算法创建了较大的随机纹理图像集。视觉成人XCAT虚拟人体模型以与纹理图像相同的分辨率体素化。肝脏内部的体素被相应的纹理体素直接替换。同样,对于肺部,现有的肺支气管/血管和肺壁之间的体素被纹理体素代替。使用十个不同的患者CT图像集作为纹理源执行此过程;为了验证人造纹理与源纹理的相似性,通过接收器操作员将具有添加纹理的成年男性XCAT幻像的重建与临床图像进行了比较特征(ROC)分析,两次样本t检验,当量检验,以及通过比较分数之间的绝对差异。;得出的结论是,该框架提供了一种有价值的工具,其中可以将解剖纹理整合到计算体模中。可以预见,朝着建立许多指示患者平民的解剖学可变虚拟模型并使这些模型更现实的步骤将在医学成像研究中特别是与图像质量有关的研究中有用。

著录项

  • 作者

    Bond, Jason Dale.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Health Sciences Radiology.
  • 学位 M.S.
  • 年度 2013
  • 页码 61 p.
  • 总页数 61
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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