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Volume visualization based on the intensity and SUSAN transfer function spaces

机译:基于强度和SUSAN传递函数空间的体积可视化

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Designing transfer functions is a challenging task for medical volume data visualization, especially when an arch of the same boundary disperses seriously and adjacent arches are intersected in the intensity and gradient magnitude (IGM) transfer function space. In this paper, a novel transfer function space is proposed to better highlight and differentiate different materials in realistic volume datasets. The proposed method combines the intensity values and three-dimensional (3D) SUSAN.(Smallest Univalue Segment Assimilating Nucleus) edge responses of the original data to define the intensity and SUSAN (IS) transfer function space. The results of various datasets in volume rendering show that boundary of different materials exhibits a trapezoidal shape in the proposed IS space, and boundary information is much better brought out in comparison to the IGM space. Thus the IS space provides much more intuitive clues than the IGM space in order that transfer functions can be more easily designed. Meanwhile, more details of materials of interest are visible in the rendering images. (C) 2014 Elsevier Ltd. All rights reserved.
机译:设计传递函数对于医疗量数据的可视化而言是一项艰巨的任务,尤其是当相同边界的弧形严重散布并且相邻的弧形在强度和梯度幅度(IGM)传递函数空间中相交时。在本文中,提出了一种新颖的传递函数空间,以更好地突出显示和区分现实体积数据集中的不同材料。所提出的方法将强度值和原始数据的三维(3D)SUSAN。(最小单值同化核)边缘响应相结合,以定义强度和SUSAN(IS)传递函数空间。体绘制中的各种数据集的结果表明,在建议的IS空间中,不同材质的边界呈现梯形形状,并且与IGM空间相比,边界信息的显示效果更好。因此,IS空间比IGM空间提供了更多直观的线索,以便可以更轻松地设计传递函数。同时,感兴趣的材料的更多细节在渲染图像中可见。 (C)2014 Elsevier Ltd.保留所有权利。

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