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    • 7. 发明授权
    • Security device for bottles
    • US11619074B2
    • 2023-04-04
    • US16773380
    • 2020-01-27
    • Omar YasinChao Han
    • Omar YasinChao Han
    • E05B73/00B65D45/32B65D50/06B65D55/14
    • A security device for mounting over the neck of a bottle having an exterior lip has outer cap structure including an annular housing portion (16) for location about the neck of a bottle and an end cap portion (18) at one end of the annular housing portion. A claw member (14) is slidably mounted to the outer cap structure for movement in a direction parallel to a longitudinal axis of the annular housing portion between operative and inoperative positions. A latch mechanism (60) releasably secures the claw member in the operative position. The claw member has a plurality of resiliently deformable elongate claws (52a, 52b) for engagement with the neck of a bottle to which the device is mounted when the claw member is in the operative position. The claw member comprises at least two sets of claws (52a, 52b) of different lengths. The latch mechanism (60) may be a magnetically-releasable latch enabling the device to be removed using a magnetic key. The device may incorporate a RF or RFID tag.
    • 9. 发明授权
    • Computation of wall thickness
    • 计算壁厚
    • US07353117B2
    • 2008-04-01
    • US10804460
    • 2004-03-19
    • Chun YuanChao HanThomas S. Hatsukami
    • Chun YuanChao HanThomas S. Hatsukami
    • G06F19/00G06K9/34
    • G06T7/0012A61B5/1075G06T7/62G06T7/66G06T17/20G06T2207/30101
    • A method for automatic vessel wall thickness measurement at any point along the perimeter of either luminal or outer vessel wall boundaries. The method employs both Delaunay triangulation and multiresolution tiling. The MaxMin angle property of the Delaunay triangulation is used to define the minimum energy function to calculate thickness. Multiresolution tiling is employed to enable the MaxMin angle lemma to be determined. The triangulation MaxMin angle lemma enables a minimal energy function to be defined based on triangulation angles, providing a stable and consistent geometrical computation. Additional morphological indexes can be assessed to achieve comprehensive quantification of vascular morphology. For example, based on the wall thickness, a set of vascular shape descriptors can be developed to distinguish different types of plaque morphology at different parts of a vessel wall.
    • 一种在管腔或外血管壁边界沿周边的任意点进行血管壁厚测量的方法。 该方法采用Delaunay三角测量和多分辨率平铺。 Delaunay三角测量的MaxMin角度属性用于定义计算厚度的最小能量函数。 采用多分辨率平铺来确定MaxMin角度引理。 三角测量MaxMin角度引理使得能够基于三角测量角度定义最小能量函数,从而提供稳定和一致的几何计算。 可以评估其他形态指标,以实现血管形态的全面定量。 例如,基于壁厚,可以开发一组血管形状描述符,以区分血管壁不同部位的不同类型的斑块形态。