Kohlmann Peter, Bruckner Stefan, Kanitsar Armin, Gröller Eduard
Institute of Computer Graphics and Algorithms, Vienna University of Technology.
IEEE Trans Vis Comput Graph. 2007 Nov-Dec;13(6):1544-51. doi: 10.1109/TVCG.2007.70576.
Although real-time interactive volume rendering is available even for very large data sets, this visualization method is used quite rarely in the clinical practice. We suspect this is because it is very complicated and time consuming to adjust the parameters to achieve meaningful results. The clinician has to take care of the appropriate viewpoint, zooming, transfer function setup, clipping planes and other parameters. Because of this, most often only 2D slices of the data set are examined. Our work introduces LiveSync, a new concept to synchronize 2D slice views and volumetric views of medical data sets. Through intuitive picking actions on the slice, the users define the anatomical structures they are interested in. The 3D volumetric view is updated automatically with the goal that the users are provided with expressive result images. To achieve this live synchronization we use a minimal set of derived information without the need for segmented data sets or data-specific pre-computations. The components we consider are the picked point, slice view zoom, patient orientation, viewpoint history, local object shape and visibility. We introduce deformed viewing spheres which encode the viewpoint quality for the components. A combination of these deformed viewing spheres is used to estimate a good viewpoint. Our system provides the physician with synchronized views which help to gain deeper insight into the medical data with minimal user interaction.
尽管实时交互式体绘制即使对于非常大的数据集也可用,但这种可视化方法在临床实践中很少使用。我们怀疑这是因为调整参数以获得有意义的结果非常复杂且耗时。临床医生必须注意合适的视角、缩放、传递函数设置、裁剪平面和其他参数。因此,通常只检查数据集的二维切片。我们的工作引入了LiveSync,这是一种同步医学数据集二维切片视图和体视图的新概念。通过在切片上进行直观的选取操作,用户可以定义他们感兴趣的解剖结构。三维体视图会自动更新,目的是为用户提供富有表现力的结果图像。为了实现这种实时同步,我们使用了一组最少的派生信息,无需分割数据集或特定于数据的预计算。我们考虑的组件包括选取点、切片视图缩放、患者方向、视角历史、局部对象形状和可见性。我们引入了变形观察球,它对这些组件的视角质量进行编码。这些变形观察球的组合用于估计一个好的视角。我们的系统为医生提供同步视图,有助于以最少的用户交互更深入地了解医学数据。