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    • 61. 发明公开
    • 정적 그림자 생성 방법 및 정적 그림자 생성 시스템
    • 用于生成静态阴影的方法和系统
    • KR1020080061505A
    • 2008-07-03
    • KR1020060136324
    • 2006-12-28
    • 네이버 주식회사
    • 김대일
    • G06T15/60
    • G06T15/60G06T3/0031G06T2215/12G06T2219/021
    • A method and a system for generating a static shadow are provided to display a quality shadow of an object by developing a 3D(Three-Dimensional) virtual cube into a 2D virtual plane figure and check the density of a shadow formed on the virtual cube accurately. A first light source(110) projects the shadow of an object formed by irradiating light beams to the object, as a 3D virtual cube. A figure decomposing unit(120) develops the virtual cube into a 2D virtual plane figure. A coordinate recognizing unit(130) generates coordinate information on the virtual plane figure with respect to the projected shadow. A graphic processing unit(140) performs rendering on the projected shadow to implement the shadow as a shadow image. An illumination measurement unit(150) determines a darkness degree of the implemented shadow image and discriminates a shadow image of a darkness degree that satisfies a predetermined level. A shadow determining unit(160) determines the discriminated shadow image as a visible shadow at a corresponding point, and reflects the determined visible shadow when the shadow of the object is processed.
    • 提供了一种用于产生静态阴影的方法和系统,以通过将3D(三维)虚拟立方体开发成2D虚拟平面图并且精确地检查形成在虚拟立方体上的阴影的密度来显示对象的质量阴影 。 第一光源(110)将通过照射光束形成的物体的阴影投射到物体,作为3D虚拟立方体。 图形分解单元(120)将虚拟立方体形成为2D虚拟平面图。 坐标识别单元(130)相对于投影阴影生成关于虚拟平面图形的坐标信息。 图形处理单元(140)在投影阴影上执行渲染以将阴影实施为阴影图像。 照明测量单元(150)确定所实现的阴影图像的黑度,并且识别满足预定水平的暗度的阴影图像。 阴影确定单元(160)将所识别的阴影图像确定为对应点处的可见阴影,并且当对象的阴影被处理时反映所确定的可见阴影。
    • 63. 发明授权
    • 경계강화필터링과 표고정보를 이용하여 3차원 지리정보를 생성하는 시스템
    • 使用强化过滤建立物体和数字高度值边缘的三维地理信息生成系统
    • KR101021013B1
    • 2011-03-09
    • KR1020100106223
    • 2010-10-28
    • (주)지오투정보기술
    • 오정환김정욱김수기
    • G06T17/05G01C21/00
    • G06T17/05G06T7/13G06T2207/10032G06T2219/021
    • PURPOSE: A system for generating 3D geographical information by using boundary strengthening filtering and altitude information is provided to correct altitude information between a building object and a ground surface through planarization work. CONSTITUTION: A border intensifying filtering unit(120) performs boundary strengthening filtering about a boundary of a 2D building object among impermeable ground information. An altitude information calculating unit(140) calculates altitude information from aerial LIDAR(Light Detection And Ranging) information. A 3D object information generator(150) obtains 3D building object information. Based on planarization coordinate information, a planarization unit(170) corrects altitude information of the 3D building object.
    • 目的:提供一种通过边界加强滤波和高度信息生成3D地理信息的系统,通过平面化工作来校正建筑物与地面之间的高度信息。 构成:边界增强滤波单元(120)对不可渗透的地面信息中的2D建筑物的边界进行边界强化滤波。 高度信息计算单元(140)从航空LIDAR(光检测和测距)信息计算高度信息。 3D对象信息生成器(150)获得3D构建对象信息。 基于平坦化坐标信息,平坦化单元(170)校正3D建筑物体的高度信息。
    • 64. 发明公开
    • ANALYZING AORTIC VALVE CALCIFICATION
    • 分析动脉瓣膜钙化
    • EP3192050A1
    • 2017-07-19
    • EP15763300.9
    • 2015-09-11
    • Koninklijke Philips N.V.
    • WEESE, JuergenGROTH, AlexandraPETERS, JochenWACHTER-STEHLE, IrinaMOLLUS, Sabine
    • G06T7/00G06T19/00
    • G06T7/12G06T7/0012G06T15/10G06T19/00G06T2207/10072G06T2207/30048G06T2207/30101G06T2207/30172G06T2210/41G06T2215/08G06T2219/021
    • A system and a method are provided for analyzing an image of an aortic valve structure to enable assessment of aortic valve calcifications. The system comprises an image interface for obtaining an image of an aortic valve structure, the aortic valve structure comprising aortic valve leaflets and an aortic bulbus. The system further comprises a segmentation subsystem for segmenting the aortic valve structure in the image to obtain a segmentation of the aortic valve structure. The system further comprises an identification subsystem for identifying a calcification on the aortic valve leaflets by analyzing the image of the aortic valve structure. The system further comprises an analysis subsystem configured for determining a centerline of the aortic bulbus by analyzing the segmentation of the aortic valve structure, and for projecting the calcification from the centerline of the aortic bulbus onto the aortic bulbus, thereby obtaining a projection indicating a location of the calcification as projected onto the aortic bulbus. The system further comprises an output unit for generating data representing the projection. Provided information on the accurate location of calcifications after a valve replacement may be advantageously used, for example, to effectively analyze the risk of paravalvular leakages of Transcatheter aortic valve implantation (TAVI) interventions for assessing the suitability of a patient for TAVI procedure.
    • 提供了用于分析主动脉瓣结构的图像以使得能够评估主动脉瓣钙化的系统和方法。 该系统包括用于获得主动脉瓣结构的图像的图像接口,该主动脉瓣结构包括主动脉瓣小叶和主动脉壁球。 该系统还包括分割子系统,用于分割图像中的主动脉瓣结构以获得主动脉瓣结构的分割。 该系统还包括识别子系统,用于通过分析主动脉瓣膜结构的图像来识别主动脉瓣膜小叶上的钙化。 该系统还包括分析子系统,该分析子系统被配置用于通过分析主动脉瓣结构的分割并且将钙化从主动脉bulbus的中心线投射到主动脉bulbus上来确定主动脉球囊的中心线,从而获得指示位置的投影 的钙化如投影到主动脉球囊。 该系统还包括用于生成表示投影的数据的输出单元。 提供关于瓣膜置换后钙化的准确位置的信息可以有利地用于例如有效地分析经导管主动脉瓣植入(TAVI)干预的瓣膜渗漏风险以评估患者对于TAVI程序的适合性。