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    • 42. 发明申请
    • SECURITY SCREENING SYSTEMS AND METHODS
    • 安全筛选系统和方法
    • US20140300897A1
    • 2014-10-09
    • US14246608
    • 2014-04-07
    • CHEMIMAGE CORPORATION
    • Patrick J. TREADOMatthew NELSONCharles W. GARDNER
    • G01J3/51G01J3/02
    • G01J3/0224G01J3/2823G01J3/36G01J2003/2826
    • The present disclosure describes security screening systems and methods for identifying a suspect material in a sample. In general terms, the system and method disclosed herein provide collection optics configured to collect a first plurality of interacted photons from an illuminated sample and generating a first optical signal. The first optical signal is separated into a plurality of optical components where the plurality of optical components are filtered by a plurality of filters. Each filter of the plurality of filters is configured to filter the plurality of optical components into a passband wavelength to generate a plurality of filtered components. The plurality of filtered components are detected by one or more detectors and one or more wavelength specific spectral images are generated. A processor is configured to analyze the one or more wavelength specific spectral images in order to identify the suspect material in the sample. The systems and methods disclosed herein may find particular use in a security setting.
    • 本公开描述了用于识别样品中的可疑材料的安全性筛选系统和方法。 一般来说,本文公开的系统和方法提供了收集光学器件,其被配置为从照明样品收集第一多个相互作用的光子并产生第一光信号。 第一光信号被分成多个光学部件,其中多个光学部件被多个滤光器过滤。 多个滤波器的每个滤波器被配置为将多个光学部件滤波成通带波长以产生多个滤波分量。 多个经滤波的分量由一个或多个检测器检测,并且产生一个或多个波长特定光谱图像。 处理器被配置为分析一个或多个波长特定光谱图像,以便识别样品中的可疑材料。 本文公开的系统和方法可以在安全设置中发现特定的用途。
    • 44. 发明申请
    • System and Method for Detecting Environmental Conditions Using Hyperspectral Imaging
    • 使用高光谱成像检测环境条件的系统和方法
    • US20130342683A1
    • 2013-12-26
    • US13973769
    • 2013-08-22
    • ChemImage Corporation
    • Matthew NelsonJeffrey CohenOksana KluevePatrick TreadoCharles Gardner
    • G01W1/00
    • G01W1/00G01J3/02G01J3/0218G01J3/027G01J3/0278G01J3/32G01J3/44G01J2003/1213G01N21/359
    • A system and method for detecting environmental conditions using SWIR hyperspectral imaging. A method may comprise collecting a plurality of interacted photons from at least one location and passing the interacted photons through a tunable filter, filtering the interacted photons into a plurality of wavelength bands. These filtered photons may be detected and analyzed to determine the presence or absence of an environmental condition. A system may comprise at least one collection lens configured to collect at least one plurality of interacted photons from at least one location and a tunable filter for filtering the interacted photons into a plurality of wavelength bands. The system may further comprise a detector configured to detect the filtered photons and generate at least one hyperspectral image representative of the location. The system may further comprise a processor for analyzing the hyperspectral data set and determining the presence or absence of an environmental condition.
    • 使用SWIR高光谱成像检测环境条件的系统和方法。 一种方法可以包括从至少一个位置收集多个相互作用的光子,并将相互作用的光子传递通过可调谐滤波器,将相互作用的光子过滤成多个波长带。 可以检测和分析这些过滤的光子以确定环境条件的存在或不存在。 系统可以包括配置成从至少一个位置收集至少一个多个相互作用的光子的至少一个集合透镜和用于将相互作用的光子滤波成多个波长带的可调滤波器。 该系统还可以包括检测器,其被配置为检测滤波的光子并且生成代表该位置的至少一个高光谱图像。 该系统还可以包括用于分析高光谱数据集并确定环境条件的存在或不存在的处理器。
    • 47. 发明申请
    • Automation of Ingredient-Specific Particle Sizing Employing Raman Chemical Imaging
    • 使用拉曼化学成像的成分特异性颗粒尺寸自动化
    • US20130218480A1
    • 2013-08-22
    • US13764374
    • 2013-02-11
    • Chemimage Corporation
    • Michael FuhrmanRyan PrioreOksana OlkhovykOksana Klueva
    • G01N15/02
    • G01N15/0227G01J3/02G01J3/027G01J3/44G01N21/65
    • A system and method for determining at least one geometric property of a particle in a sample. A sample is irradiated to thereby generate Raman scattered photons. These photons are collected to generate a Raman chemical image. A first threshold is applied wherein the first threshold is such that all particles in the sample are detected. A particle in the sample is selected and a second threshold is applied so that at least one geometric property of the selected particle can be determined. At least one spectrum representative of the selected particle is analyzed to determine whether or not it is a particle of interest. The step of determining a second threshold may be iterative and automated via software so that candidate second thresholds are applied until a satisfactory result is achieved.
    • 用于确定样品中颗粒的至少一个几何性质的系统和方法。 照射样品从而产生拉曼散射光子。 收集这些光子以产生拉曼化学图像。 应用第一阈值,其中第一阈值使得检测样品中的所有颗粒。 选择样品中的颗粒并施加第二阈值,使得可以确定所选择的颗粒的至少一个几何性质。 分析代表所选粒子的至少一个光谱,以确定其是否是感兴趣的粒子。 确定第二阈值的步骤可以是经由软件的迭代和自动化,使得应用候选的第二阈值直到达到令人满意的结果。