Weissenbock Johannes, Frohler Bernhard, Groller Eduard, Kastner Johann, Heinzl Christoph
IEEE Trans Vis Comput Graph. 2018 Aug 20. doi: 10.1109/TVCG.2018.2864510.
The comparison of many members of an ensemble is difficult, tedious, and error-prone, which is aggravated by often just subtle differences. In this paper, we introduce Dynamic Volume Lines for the interactive visual analysis and comparison of sets of 3D volumes. Each volume is linearized along a Hilbert space-filling curve into a 1D Hilbert line plot, which depicts the intensities over the Hilbert indices. We present a nonlinear scaling of these 1D Hilbert line plots based on the intensity variations in the ensemble of 3D volumes, which enables a more effective use of the available screen space. The nonlinear scaling builds the basis for our interactive visualization techniques. An interactive histogram heatmap of the intensity frequencies serves as overview visualization. When zooming in, the frequencies are replaced by detailed 1D Hilbert line plots and optional functional boxplots. To focus on important regions of the volume ensemble, nonlinear scaling is incorporated into the plots. An interactive scaling widget depicts the local ensemble variations. Our brushing and linking interface reveals, for example, regions with a high ensemble variation by showing the affected voxels in a 3D spatial view. We show the applicability of our concepts using two case studies on ensembles of 3D volumes resulting from tomographic reconstruction. In the first case study, we evaluate an artificial specimen from simulated industrial 3D X-ray computed tomography (XCT). In the second case study, a real-world XCT foam specimen is investigated. Our results show that Dynamic Volume Lines can identify regions with high local intensity variations, allowing the user to draw conclusions, for example, about the choice of reconstruction parameters. Furthermore, it is possible to detect ring artifacts in reconstructions volumes.
对一组数据中的多个成员进行比较既困难、繁琐又容易出错,而常常存在的细微差异会加剧这种情况。在本文中,我们引入了动态体积线,用于对三维体积数据集进行交互式视觉分析和比较。每个体积沿着希尔伯特空间填充曲线线性化为一维希尔伯特线图,该图描绘了希尔伯特索引上的强度。我们基于三维体积数据集中的强度变化,对这些一维希尔伯特线图进行非线性缩放,从而更有效地利用可用屏幕空间。这种非线性缩放为我们的交互式可视化技术奠定了基础。强度频率的交互式直方图热图用作概览可视化。放大时,频率将被详细的一维希尔伯特线图和可选的功能箱线图取代。为了关注体积数据集的重要区域,非线性缩放被纳入到图中。一个交互式缩放小部件描绘了局部数据集的变化。我们的刷选和链接界面通过在三维空间视图中显示受影响的体素,例如,揭示了具有高数据集变化的区域。我们通过对断层扫描重建得到的三维体积数据集进行两个案例研究,展示了我们概念的适用性。在第一个案例研究中,我们评估了一个来自模拟工业三维X射线计算机断层扫描(XCT)的人工样本。在第二个案例研究中,我们研究了一个真实世界的XCT泡沫样本。我们的结果表明,动态体积线可以识别局部强度变化高的区域,从而使用户能够得出例如关于重建参数选择的结论。此外,还可以在重建体积中检测环形伪影。