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Interactive visualization of 4D parametric fields

机译:4D参数字段的交互式可视化

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Abstract: Parametric images are generated from the analysis of image data to help characterize the functional information present in the original images. They address the need for enhancing the spatial and temporal resolutions for analysis. Parametric fields provide an underlying model that can be evaluated at any image location using its analytical formulation. To facilitate interactive display and analysis of such fields, we developed a visualization scheme that can help directly render the parametric field using graphics interpolation methods. This eliminates the need for high resolution storage of such data for visualization purposes. The major advantage of such an approach is that graphics hardware can be used to accelerate the interpolation, thus achieving substantial improvement in the performance. Successive derivative parametric images, such as velocity or acceleration maps from the motion fields, can be displayed in real-time. The example presented here is the 4D B-spline based motion field representation of the cardiac-tagged MR images. A motion field with 7 by 7 by 7 by 15 control points shown to adequately describe the full motion of the heart during cardiac cycle. Using this field, material points can be tracked over time and local mechanical properties can be computed. The visualization method presented here utilizes the similarity between the B-spline representation of the motion fields and the graphics hardware support for NURBS display with texture mapping to achieve high performance visualization of these parametric fields. !20
机译:摘要:参数图像是通过对图像数据进行分析而生成的,以帮助表征原始图像中存在的功能信息。它们满足了增强分析时空分辨率的需求。参数字段提供了可使用其分析公式在任何图像位置进行评估的基础模型。为了促进此类字段的交互式显示和分析,我们开发了一种可视化方案,可以使用图形插值方法帮助直接渲染参数字段。这样就无需为了可视化目的而高分辨率存储此类数据。这种方法的主要优点是可以使用图形硬件来加速插值,从而实现性能上的显着改善。连续的导数参数图像,例如来自运动场的速度或加速度图,可以实时显示。此处显示的示例是心脏标记MR图像的基于4D B样条的运动场表示。具有7 x 7 x 7 x 15个控制点的运动场显示出足以描述心脏在心动周期期间的完整运动。使用此字段,可以随时间跟踪材料点,并可以计算局部机械性能。此处介绍的可视化方法利用了运动场的B样条表示与具有纹理映射的NURBS显示的图形硬件支持之间的相似性,以实现这些参数场的高性能可视化。 !20

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