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    • 1. 发明授权
    • Opto-electronic morphological processor
    • 光电形态处理器
    • US5263096A
    • 1993-11-16
    • US678498
    • 1991-04-01
    • Jeffrey W. YuTien-Hsin ChaoLi J. ChengDemetri Psaltis
    • Jeffrey W. YuTien-Hsin ChaoLi J. ChengDemetri Psaltis
    • G06E3/00G06K9/58G06K9/74G06K9/40G02B1/06G09G3/36
    • G06K9/745G06E3/005G06K9/58
    • The opto-electronic morphological processor of the present invention is capable of receiving optical inputs and emitting optical outputs. The use of optics allows implementation of parallel input/output, thereby overcoming a major bottleneck in prior art image processing systems. The processor consists of three components, namely, detectors, morphological operators and modulators. The detectors and operators are fabricated on a silicon VLSI chip and implement the optical input and morphological operations. A layer of ferro-electric liquid crystals is integrated with a silicon chip to provide the optical modulation. The implementation of the image processing operators in electronics leads to a wide range of applications and the use of optical connections allows cascadability of these parallel opto-electronic image processing components and high speed operation. Such an opto-electronic morphological processor may be used as the pre-processing stage in an image recognition system. In one example disclosed herein, the optical input/optical output morphological processor of the invention is interfaced with a binary phase-only correlator to produce an image recognition system.
    • 本发明的光电形态处理器能够接收光输入和发射光输出。 使用光学器件允许并行输入/输出的实现,从而克服了现有技术图像处理系统中的主要瓶颈。 处理器由三个组件组成,即检测器,形态运算符和调制器。 检测器和操作器在硅VLSI芯片上制造,并实现光输入和形态操作。 一层铁电液晶与硅芯片集成以提供光调制。 电子产品中的图像处理操作员的实现导致了广泛的应用,并且光连接的使用允许这些平行光电图像处理组件的可级联和高速操作。 这种光电形态处理器可以用作图像识别系统中的预处理阶段。 在本文公开的一个示例中,本发明的光输入/光输出形态处理器与二进制相位相关器接口以产生图像识别系统。
    • 6. 发明申请
    • PLASMON ASSISTED CONTROL OF OPTOFLUIDICS
    • PLASMON协助控制光触媒
    • US20080245430A1
    • 2008-10-09
    • US12020504
    • 2008-01-25
    • James AdlemanDavid A. BoydDavid G. GoodwinDemetri Psaltis
    • James AdlemanDavid A. BoydDavid G. GoodwinDemetri Psaltis
    • F15C1/04
    • F04B19/006B01L3/50273B01L2400/0454Y10T137/0318Y10T137/2191Y10T137/2196
    • A method of microfluidic control via localized heating includes providing a microchannel structure with a base region that is partially filled with a volume of liquid being separated from a gas by a liquid-gas interface region. The base region includes one or more physical structures. The method further includes supplying energy input to a portion of the one or more physical structures within the volume of liquid in a vicinity of the liquid-gas interface region to cause localized heating of the portion of the one or more physical structures. The method also includes transferring heat from the portion of the one or more physical structures to surrounding liquid in the vicinity of the liquid-gas interface region and generating an interphase mass transport at the liquid-gas interface region or across a gas bubble while the volume of liquid and the gas remain to be substantially at ambient temperature.
    • 通过局部加热的微流控制的方法包括提供微通道结构,其具有部分填充有通过液 - 气界面区域与气体分离的体积的液体的基区。 基区包括一个或多个物理结构。 该方法还包括向液 - 液界面区域附近的液体体积内的一个或多个物理结构的一部分提供能量输入,以引起该一个或多个物理结构的该部分的局部加热。 该方法还包括将热量从一个或多个物理结构的部分转移到液 - 气界面区附近的周围液体,并在液 - 气界面区域或气泡周围产生相间质量传输,同时体积 的液体,气体基本保持在环境温度。