Caban Jesus, Joshi Alark, Rheingans Penny
University of Maryland, Baltimore County, USA.
IEEE Trans Vis Comput Graph. 2007 Nov-Dec;13(6):1472-9. doi: 10.1109/TVCG.2007.70599.
Analyzing, visualizing, and illustrating changes within time-varying volumetric data is challenging due to the dynamic changes occurring between timesteps. The changes and variations in computational fluid dynamic volumes and atmospheric 3D datasets do not follow any particular transformation. Features within the data move at different speeds and directions making the tracking and visualization of these features a difficult task. We introduce a texture-based feature tracking technique to overcome some of the current limitations found in the illustration and visualization of dynamic changes within time-varying volumetric data. Our texture-based technique tracks various features individually and then uses the tracked objects to better visualize structural changes. We show the effectiveness of our texture-based tracking technique with both synthetic and real world time-varying data. Furthermore, we highlight the specific visualization, annotation, registration, and feature isolation benefits of our technique. For instance, we show how our texture-based tracking can lead to insightful visualizations of time-varying data. Such visualizations, more than traditional visualization techniques, can assist domain scientists to explore and understand dynamic changes.
由于时间步长之间发生的动态变化,分析、可视化和展示时变体数据中的变化具有挑战性。计算流体动力学体积和大气三维数据集中的变化和变异并不遵循任何特定的变换。数据中的特征以不同的速度和方向移动,使得这些特征的跟踪和可视化成为一项艰巨的任务。我们引入一种基于纹理的特征跟踪技术,以克服时变体数据动态变化的图示和可视化中目前发现的一些局限性。我们基于纹理的技术分别跟踪各种特征,然后使用跟踪的对象来更好地可视化结构变化。我们通过合成和真实世界的时变数据展示了基于纹理的跟踪技术的有效性。此外,我们强调了我们技术在特定可视化、注释、配准和特征隔离方面的优势。例如,我们展示了基于纹理的跟踪如何能够实现对时变数据的有洞察力的可视化。这样的可视化比传统的可视化技术更能帮助领域科学家探索和理解动态变化。