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    • 1. 发明授权
    • Computer system and method for generating a 3D geometric model
    • 用于生成3D几何模型的计算机系统和方法
    • US08970579B2
    • 2015-03-03
    • US12671014
    • 2008-07-22
    • Pascal MullerGang ZengLuc Van Gool
    • Pascal MullerGang ZengLuc Van Gool
    • G06T17/00G06K9/46G06T17/10
    • G06F17/5004G06K9/4604G06T17/005G06T17/10
    • For generating a 3D geometric model (44) and/or a definition of the 3D geometric model from a single digital image of a building facade (4), a facade structure is detected from the digital image by dividing the facade (4) along horizontal lines into horizontal layers representative of floors (41), and by dividing the horizontal layers along vertical lines into tiles (42). The tiles (42) are further subdivided into a hierarchy of rectangular image regions (43). 3D architectural objects (45) corresponding to the image regions (43) are determined in an architectural element library. The 3D geometric model (44) or the definition of the 3D geometric model is generated based on the facade structure, the hierarchy and the 3D architectural objects (45). The library-based generation of the 3D geometric model makes it possible to enhance simple textured building models constructed from aerial images and/or ground-based photographs.
    • 为了从建筑立面(4)的单个数字图像生成3D几何模型(44)和/或3D几何模型的定义,通过将立面(4)沿水平方向分割,从数字图像检测立面结构 将水平层划分成代表层(41)的水平层,并且通过沿着垂直线将水平层划分成瓦片(42)。 瓦片(42)进一步细分为矩形图像区域(43)的层级。 在建筑元素库中确定对应于图像区域(43)的3D建筑物体(45)。 基于立面结构,层次结构和3D建筑对象(45)生成3D几何模型(44)或3D几何模型的定义。 基于图书馆的3D几何模型可以增强由空中图像和/或地面照片构成的简单纹理建筑模型。
    • 2. 发明授权
    • Enhancing cochlear implants with hearing aid signal processing technologies
    • 用助听器信号处理技术增强人工耳蜗植入
    • US08942815B2
    • 2015-01-27
    • US10805016
    • 2004-03-19
    • King ChungFan-Gang Zeng
    • King ChungFan-Gang Zeng
    • A61N1/00A61N1/36
    • A61N1/36032A61N1/36036
    • A system and method that enhance the performance of cochlear implant signal processing in an amplification device. The system utilizes a signal input device that picks up the sounds from the environment or other hearing or audio devices and feeds the incoming signal into a front-end signal processor. The front-end processor pre-processes the signals and feeds them into a cochlear implant signal processor. The system may also insert a front-end processor into multiple signal processing stages of a cochlear implant signal processor with the front-end processor “sandwiched” between the multiple signal processing stages of the cochlear implant signal processors. The system may also insert a front-end processor into multiple signal processing stages of a cochlear implant signal processor with the front-end processor being either an integrated part of the cochlear implant signal processor or a functionally distinctive part for bilateral cochlear implants.
    • 一种增强放大装置中的人工耳蜗信号处理性能的系统和方法。 该系统利用一个信号输入设备来拾取来自环境或其他听觉或音频设备的声音,并将输入信号馈送到前端信号处理器。 前端处理器预处理信号并将其馈送到人工耳蜗信号处理器中。 该系统还可以将前端处理器插入耳蜗植入信号处理器的多个信号处理阶段,其中前端处理器“夹在”人工耳蜗植入信号处理器的多个信号处理阶段之间。 该系统还可以将前端处理器插入到耳蜗植入信号处理器的多个信号处理阶段中,其中前端处理器是耳蜗植入信号处理器的集成部分或用于双侧耳蜗植入物的功能特征部分。
    • 10. 发明申请
    • A+ Biomarker Assays
    • A +生物标志物测定
    • US20110311998A1
    • 2011-12-22
    • US13141525
    • 2010-02-19
    • Gang Zeng
    • Gang Zeng
    • G01N33/53
    • G01N33/57434G01N33/536
    • Disclosed herein assay methods which comprise detecting the presence, absence or amount of at least one antibody which specifically binds a first biomarker or an epitope thereof and at least one second biomarker in a sample which comprises a single reaction step whereby both a first capture reagent for the antibody and a second capture reagent for the second biomarker are together contacted with the sample, and detecting the presence, absence or amount of the antibody, and detecting the presence, absence or amount of the second biomarker. Also disclosed are assay methods for prostate cancer.
    • 本文公开了测定方法,其包括检测特异性结合第一生物标志物或其表位的至少一种抗体的存在,不存在或量,以及样品中的至少一种第二生物标志物,其包含单个反应步骤, 第二生物标志物的抗体和第二捕获试剂与样品一起接触,并检测抗体的存在,不存在或量,以及检测第二生物标志物的存在,不存在或量。 还公开了前列腺癌的测定方法。