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Visualizing Tensor Normal Distributions at Multiple Levels of Detail

机译:可视化多个细节级别的张量正态分布

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Despite the widely recognized importance of symmetric second order tensor fields in medicine and engineering, the visualization of data uncertainty in tensor fields is still in its infancy. A recently proposed tensorial normal distribution, involving a fourth order covariance tensor, provides a mathematical description of how different aspects of the tensor field, such as trace, anisotropy, or orientation, vary and covary at each point. However, this wealth of information is far too rich for a human analyst to take in at a single glance, and no suitable visualization tools are available. We propose a novel approach that facilitates visual analysis of tensor covariance at multiple levels of detail. We start with a visual abstraction that uses slice views and direct volume rendering to indicate large-scale changes in the covariance structure, and locations with high overall variance. We then provide tools for interactive exploration, making it possible to drill down into different types of variability, such as in shape or orientation. Finally, we allow the analyst to focus on specific locations of the field, and provide tensor glyph animations and overlays that intuitively depict confidence intervals at those points. Our system is demonstrated by investigating the effects of measurement noise on diffusion tensor MRI, and by analyzing two ensembles of stress tensor fields from solid mechanics.
机译:尽管对称二阶张量场在医学和工程学中的重要性已得到广泛认可,但张量场中数据不确定性的可视化仍处于起步阶段。最近提出的涉及四阶协方差张量的张量正态分布提供了关于张量场的不同方面(例如迹线,各向异性或方向)在每个点处如何变化和变化的数学描述。但是,这些信息非常丰富,以至于人类分析人员一眼也无法接受,因此没有合适的可视化工具可用。我们提出了一种新颖的方法,该方法有助于在多个细节级别上对张量协方差进行可视化分析。我们从视觉抽象开始,该视觉抽象使用切片视图和直接体积渲染来指示协方差结构中的大规模更改以及具有高总体方差的位置。然后,我们提供了用于交互式探索的工具,从而可以深入研究不同类型的可变性,例如形状或方向。最后,我们允许分析人员将注意力集中在字段的特定位置,并提供张量字形动画和叠加层,以直观方式描绘这些点的置信区间。通过研究测量噪声对扩散张量MRI的影响,以及通过分析来自固体力学的应力张量场的两个集合,证明了我们的系统。

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