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    • 22. 发明申请
    • Method and Apparatus for Discrete Mesh Filleting and Rounding Through Ball Pivoting
    • 离散网格切片和圆球透视的方法和装置
    • US20070153000A1
    • 2007-07-05
    • US11466211
    • 2006-08-22
    • Hui XieJin ZhouGregory SlabaughGozde UnalTong Fang
    • Hui XieJin ZhouGregory SlabaughGozde UnalTong Fang
    • G06T17/20G06T15/30
    • G06T17/20
    • A method and apparatus for rounding a sharp edge of a model of an object is disclosed whereby a ball is propagated in a desired direction along the edge to be smoothed. The position of the ball at each point in its propagation is noted and, as a result, a virtual tunnel through which the ball passed may be constructed. Points on the sides of the surface of the object in proximity to the sharp edge are then projected onto the virtual tunnel by connecting with a line each point in proximity to the sharp edge to the center of the tunnel. New projected points are created at each position on the surface of the tunnel where the lines intersect that surface. The original points along the sharp edge are then hidden or deleted and the points along the virtual tunnel are connected via well-known surface reconstruction methods. In this way, a sharp edge of a triangle mesh model are advantageously smoothed.
    • 公开了一种用于使物体的模型的锋利边缘倒圆的方法和装置,其中球沿着待平滑的边缘在期望的方向上传播。 注意到球在其传播中的每个点处的位置,结果可以构造球通过的虚拟隧道。 接近尖锐边缘的物体表面侧面的点然后通过与尖锐边缘附近的每条线连接到隧道中心而投射到虚拟隧道上。 在隧道表面的每个位置上创建新的投影点,其中线与该表面相交。 然后沿尖锐边缘的原始点被隐藏或删除,沿着虚拟隧道的点通过公知的表面重建方法连接。 以这种方式,有利地平滑了三角形网格模型的尖锐边缘。
    • 25. 发明授权
    • Method and apparatus for inner wall extraction and stent strut detection using intravascular optical coherence tomography imaging
    • 使用血管内光学相干断层扫描成像的内壁提取和支架支架检测方法和装置
    • US07801343B2
    • 2010-09-21
    • US11555806
    • 2006-11-02
    • Gozde UnalYan YangGregory G. SlabaughTong Fang
    • Gozde UnalYan YangGregory G. SlabaughTong Fang
    • G06K9/00A61B5/05
    • A61B5/6852A61B5/0066A61B5/0086
    • A method and apparatus for automatically detecting stent struts in an image is disclosed whereby the inner boundary, or lumen, of an artery wall is first detected automatically and intensity profiles along rays in the image are determined. In one embodiment, detection of the lumen boundary may be accomplished, for example, by evolving a geometric shape, such as an ellipse, using a region-based algorithm technique, a geodesic boundary-based algorithm technique or a combination of the two techniques. Once the lumen boundary has been determined, in another embodiment, the stent struts are detected using a ray shooting algorithm whereby a ray is projected outward in the OCT image starting from the position in the image of the OCT sensor. The intensities of the pixels along the ray are used to detect the presence of a stent strut in the image.
    • 公开了一种用于自动检测图像中的支架支柱的方法和装置,其中首先自动检测动脉壁的内边界或内腔,并确定与图像中的光线的强度分布。 在一个实施例中,可以例如通过使用基于区域的算法技术,基于测地边界的算法技术或两种技术的组合来演示诸如椭圆的几何形状来实现流明边界的检测。 一旦已经确定了管腔边界,在另一个实施例中,使用射线射击算法来检测支架支柱,由此射线从OCT传感器的图像中的位置开始向OCT中投射。 使用沿着光线的像素的强度来检测图像中支架支柱的存在。