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    • 2. 发明申请
    • Method and apparatus for merging meshes, and computer readable medium
    • 用于合并网格的方法和装置,以及计算机可读介质
    • US20050017987A1
    • 2005-01-27
    • US10716496
    • 2003-11-20
    • Shinichi HoritaKoichi FujiwaraEiro FujiiKoji FujiwaraOsamu Toyama
    • Shinichi HoritaKoichi FujiwaraEiro FujiiKoji FujiwaraOsamu Toyama
    • G06F17/50G06T17/20G09G5/00
    • G06T17/20
    • A method and an apparatus are provided for merging two meshes whose density differs from each other so as to avoid unnatural appearance. A first mesh and a second mesh that differ from each other in density are merged by the following procedure. Edge length of a portion that becomes a boundary between the first and second meshes is determined, size of a first group of polygons including the edge of the portion is determined based on the determined length and size of a second group of polygons is adjusted so that an adjustment ratio is smaller as a distance between a position of each of the second group of polygons and the portion is greater, the first and second group of polygons being part of polygons structuring the first and second meshes, and the first and second meshes in each of which the polygons are adjusted are merged.
    • 提供了一种用于合并密度彼此不同的两个网格的方法和装置,以避免不自然的外观。 通过以下步骤合并第一网格和密度彼此不同的第二网格。 确定成为第一和第二网格之间的边界的部分的边缘长度,基于确定的第二组多边形的长度和尺寸来确定包括该部分的边缘的第一组多边形的大小,使得 第二组多边形的位置与部分之间的距离越大,第一和第二组多边形是构成第一和第二网格的多边形的一部分,并且第一和第二网格在 其中的每一个被调整的多边形被合并。
    • 3. 发明授权
    • Method for generating surface data to be added to three dimensional shape data
    • 用于生成要添加到三维形状数据的表面数据的方法
    • US07215336B2
    • 2007-05-08
    • US10847886
    • 2004-05-19
    • Koichi FujiwaraOsamu ToyamaEiro Fujii
    • Koichi FujiwaraOsamu ToyamaEiro Fujii
    • G06T17/00
    • G06T17/20
    • An object of the present invention is to automatically determine the orientation of a newly generated surface, etc. when performing such processing as filling a dropout portion of three dimensional shape data, and to generate more natural three dimensional shape data. The present invention provides a method for generating a grid-patterned surface in three dimensional shape data, and comprises a first step (#11) for detecting the orientation of a polygon in the three dimensional shape data that is located at a periphery of a surface to be fitted, a second step (#12) for determining the orientation of the surface so that a grid orientation of the surface matches the orientation of the detected polygon, and a third step (#13) for fitting the surface onto the three dimensional shape data while maintaining the thus determined orientation.
    • 本发明的目的是在进行填充三维形状数据的压出部分的处理时自动确定新产生的表面等的取向,并且生成更自然的三维形状数据。 本发明提供了一种用于在三维形状数据中生成网格图案表面的方法,并且包括用于检测位于表面周边的三维形状数据中的多边形的取向的第一步骤(#11) 要安装的第二步骤(#12),用于确定表面的取向,使得表面的网格取向与检测到的多边形的取向一致;以及第三步骤(#13),用于将表面装配到三维 同时保持如此确定的取向。
    • 4. 发明授权
    • Method and apparatus for merging meshes, and computer readable medium
    • 用于合并网格的方法和装置,以及计算机可读介质
    • US07148904B2
    • 2006-12-12
    • US10716496
    • 2003-11-20
    • Shinichi HoritaKoichi FujiwaraEiro FujiiKoji FujiwaraOsamu Toyama
    • Shinichi HoritaKoichi FujiwaraEiro FujiiKoji FujiwaraOsamu Toyama
    • G09G5/00
    • G06T17/20
    • A method and an apparatus are provided for merging two meshes whose density differs from each other so as to avoid unnatural appearance. A first mesh and a second mesh that differ from each other in density are merged by the following procedure. Edge length of a portion that becomes a boundary between the first and second meshes is determined, size of a first group of polygons including the edge of the portion is determined based on the determined length and size of a second group of polygons is adjusted so that an adjustment ratio is smaller as a distance between a position of each of the second group of polygons and the portion is greater, the first and second group of polygons being part of polygons structuring the first and second meshes, and the first and second meshes in each of which the polygons are adjusted are merged.
    • 提供了一种用于合并密度彼此不同的两个网格的方法和装置,以避免不自然的外观。 通过以下步骤合并第一网格和密度彼此不同的第二网格。 确定成为第一和第二网格之间的边界的部分的边缘长度,基于确定的第二组多边形的长度和大小来确定包括该部分的边缘的第一组多边形的大小,使得 第二组多边形的位置与部分之间的距离越大,第一和第二组多边形是构成第一和第二网格的多边形的一部分,并且第一和第二网格在 其中的每一个被调整的多边形被合并。
    • 8. 发明授权
    • Image processing apparatus, and computer program
    • 图像处理装置和计算机程序
    • US07327363B2
    • 2008-02-05
    • US11243025
    • 2005-10-04
    • Koichi FujiwaraOsamu Toyama
    • Koichi FujiwaraOsamu Toyama
    • G06T15/00
    • G06T15/08
    • When volume data of a three-dimensional object to be processed is read and stored into a predetermined storage, first, a plurality of reference planes are set and a plurality of reference distance maps each indicative of distribution of distances between the three-dimensional object and each of the reference planes are generated. Next, when an actual projection plane onto which the three-dimensional object is projected in the volume rendering is set, two or more distance maps out of the plurality of reference distance maps are converted into two or more converted distance maps in accordance with a positional relation between two or more reference planes corresponding to the two or more distance maps and the actual projection plane, and integrating the resultants, thereby generating a distance map for visualization indicative of distribution of distances between the three-dimensional object and the actual projection plane.
    • 当要处理的三维物体的体积数据被读取并存储到预定存储器中时,首先设置多个参考平面,并且将多个参考距离映射到每一个指示三维物体和 生成每个参考平面。 接下来,当在体绘制中投射了三维物体的实际投影平面被设置时,多个参考距离图中的两个或更多个距离映射根据位置 对应于两个或更多个距离图和实际投影平面的两个或更多个参考平面之间的关系,并且对结果进行积分,从而生成用于可视化的距离图,指示三维物体与实际投影平面之间的距离分布。
    • 10. 发明授权
    • Contour extraction device and program
    • 轮廓提取装置和程序
    • US08532392B2
    • 2013-09-10
    • US13379520
    • 2010-03-18
    • Koichi FujiwaraOsamu Toyama
    • Koichi FujiwaraOsamu Toyama
    • G06K9/46
    • G06T7/149G06T7/12G06T2207/10132G06T2207/20116G06T2207/30101
    • An object of the present invention is to provide the technology capable of appropriately balancing the preciseness of contour extraction and calculation cost. In order to achieve this object, an energy function setting section sets an energy function that is expressed by a weighted linear sum of a plurality of kinds of energy terms defined correspondingly to a state of an active curve and is formulated so as to have a smaller value as approaching a shape of the contour to be extracted, and an iterative computation processing section minimizes the energy function by an iterative computation. An end instruction section sets an auxiliary function formulated so as to monotonously increase in accordance with the number of iteration times of iterative computation and sets a judging function expressed by a linear sum of the auxiliary function and the energy function. Then, a point of time when a local minimum appears in the judging function in the course of the iterative computation is judged as the end timing of iterative computing.
    • 本发明的目的是提供能够适当地平衡轮廓提取的精度和计算成本的技术。 为了实现该目的,能量函数设定部设定能量函数,该能量函数由对应于活性曲线的状态定义的多种能量项的加权线性和表示,并且被配置为具有较小的 值接近要提取的轮廓的形状,迭代计算处理部通过迭代计算使能量函数最小化。 结束指令部分设置辅助功能,以便根据迭代计算的迭代次数单调增加,并设置由辅助功能和能量函数的线性和表示的判断功能。 然后,在迭代计算过程中在判断功能中出现局部最小值的时间点被判断为迭代计算的结束时刻。