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    • 1. 发明授权
    • Spectroscopic systems and methods for classifying and pharmaceutically treating cells
    • 用于分类和药物治疗细胞的光谱系统和方法
    • US08379197B2
    • 2013-02-19
    • US12462350
    • 2009-08-03
    • Janice PanzaJohn S. MaierJason Neiss
    • Janice PanzaJohn S. MaierJason Neiss
    • G01J3/00G01J3/44
    • G01J3/44G01J3/10G01J3/36G01N15/1475G01N21/6458G01N21/65G01N2015/1006G01N2015/1488G02B21/0096
    • A system and method to distinguish normal cells from cells having undergone a biochemical change. A pre-determined vector space is selected where the vector space mathematically describes a first plurality of reference spectral data sets for normal cells and a second plurality of reference spectral data sets for cells having undergone a biochemical change. A sample is irradiated to generate a target spectral data set based on photons absorbed, reflected, emitted, or scattered by the sample. The target spectral data set is transformed into a pre-determined vector space. A distribution of transformed data is analyzed in the pre-determined vector space. Based on the analysis, the sample is classified as containing normal cells, cells having undergone a biochemical change, and combinations thereof. The method includes treating the sample with a pharmaceutical agent prior to irradiating the sample and using the classification to assess the efficiency of the pharmaceutical agent.
    • 将正常细胞与经历生物化学变化的细胞区分开的系统和方法。 选择预定向量空间,其中矢量空间数学地描述正常小区的第一多个参考频谱数据集,以及经历生物化学变化的小区的第二多个参考频谱数据集。 照射样品以基于样品吸收,反射,发射或散射的光子产生目标光谱数据集。 将目标光谱数据集转换为预定向量空间。 在预定向量空间中分析变换数据的分布。 基于该分析,将样品分类为含有正常细胞,经历生物化学变化的细胞及其组合。 该方法包括在照射样品之前用药剂处理样品并使用分类来评估药剂的效率。
    • 2. 发明授权
    • Method and apparatus for super montage large area spectroscopic imaging
    • 超级蒙太奇大面积光谱成像方法与装置
    • US07705981B2
    • 2010-04-27
    • US12180344
    • 2008-07-25
    • John S. MaierJason H. Neiss
    • John S. MaierJason H. Neiss
    • G01J3/44
    • G06T5/006G01J2003/2826G06T5/50
    • The disclosure relates to Method and Apparatus for Super Montage Large area Spectroscopic Imaging. In one embodiment of the disclosure, a method for producing a spectroscopic image of an object includes the steps of (a) irradiating the object with light to thereby produce from the object scattered and/or emitted (interchangeably “scattered”) light for each of a plurality of wavelengths; (b) producing separately for each of the plurality of wavelengths a plurality of substantially contiguous sub-images of the object; (c) compensating for spatial aberrations in ones of the sub-images for a select one of the plurality of wavelengths; (d) compensating for intensity aberrations between ones of the substantially contiguous sub-images for one of the plurality of wavelengths; and (e) combining the sub-images for the select one wavelength to thereby produce said spectroscopic image of the object.
    • 本公开涉及超级蒙太奇大面积光谱成像方法和装置。 在本公开的一个实施例中,用于产生物体的分光图像的方法包括以下步骤:(a)用光照射物体,从而从物体散射和/或发射(互换地“散射”)的光中产生 多个波长; (b)为所述多个波长中的每一个分别产生所述物体的多个基本相邻的子图像; (c)补偿所述多个波长中的选择一个的子图像中的空间像差; (d)补偿所述多个波长中的一个波长的所述基本连续的子图像中的一个的强度像差; 和(e)组合所选择的一个波长的子图像,从而产生该对象的所述分光图像。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR THE DEPOSITION, IMAGING, DETECTION AND IDENTIFICATION OF THREAT AGENTS
    • 沉积物成像,成像,检测和鉴定的系统和方法
    • US20080316468A1
    • 2008-12-25
    • US11351329
    • 2006-02-09
    • Patrick J. TreadoCharles W. Gardner, JR.John S. Maier
    • Patrick J. TreadoCharles W. Gardner, JR.John S. Maier
    • G01N21/47G01J3/44G01N21/65
    • G01J3/44G01N21/65
    • A system and method for depositing a sample of a threat agent onto a substrate. The deposition of the threat agent onto the substrate is visually observed by analyzing the elastic scattered photons produced by the threat agent using elastic scatter imaging to form an image of the threat agent on the substrate, wherein depositing of the threat agent is substantially coincident in time with visually observing of the deposition of the threat agent.A system and method for depositing a sample of a threat agent onto a substrate. A single illumination source illuminates the threat agent on the substrate with a plurality of photons to thereby produce elastic scattered photons. Deposition of the threat agent onto the substrate is visually observed by analyzing the elastic scattered photons produced by the threat agent using elastic scatter imaging to form an image of the threat agent on the substrate.
    • 一种用于将威胁剂样品沉积到基底上的系统和方法。 通过使用弹性散射成像分析由威胁剂产生的弹性散射光子以形成威胁剂在基材上的图像,目视观察威胁剂沉积在基材上,其中威胁剂的沉积在时间上基本一致 在视觉上观察威胁剂的沉积。 一种用于将威胁剂样品沉积到基底上的系统和方法。 单个照明源用多个光子照射基板上的威胁剂,从而产生弹性散射的光子。 通过使用弹性散射成像分析由威胁剂产生的弹性散射光子以在基底上形成威胁剂的图像,目视观察威胁剂在基材上的沉积。
    • 7. 发明授权
    • System and method for dynamic chemical imaging
    • 动态化学成像系统和方法
    • US07317526B2
    • 2008-01-08
    • US11399032
    • 2006-04-06
    • Thomas C. VoigtDavid TuschelJohn S. Maier
    • Thomas C. VoigtDavid TuschelJohn S. Maier
    • G01J3/44G01N21/65
    • G01N21/6456G01J3/12G01J3/1256G01J3/2823G01J3/32G01J3/44G01J2003/1269G01N21/3563G01N21/3577G01N21/65
    • A system and method for detecting dynamic changes that occur in a sample between a first time interval and a second time interval using a series of at least first and second sequential chemical images of the sample. During the first time interval: (i) the sample is illuminated with a plurality of photons to thereby produce photons scattered or emitted by the sample; (ii) a two-dimensional array of detection elements is used to simultaneously detect scattered or emitted photons in a first predetermined wavelength band from different locations on or within the sample; and (iii) the two-dimensional array of detection elements is thereafter used one or more further times to simultaneously detect scattered or emitted photons in one or more further predetermined wavelength band(s) from different locations on or within the sample. The outputs of the two-dimensional array of detection elements during the first time interval are then combined to generate the first chemical image of the sample. The process is repeated during the second time interval to generate the second chemical image of the sample. Dynamic changes occurring in the sample between the first time interval and the second time interval are detected based on one or more differences between the first and second chemical images.
    • 一种系统和方法,用于使用所述样本的至少第一和第二顺序化学图像的一系列来检测在第一时间间隔和第二时间间隔之间在样本中发生的动态变化。 在第一时间间隔期间:(i)样品用多个光子照射,从而产生样品散射或发射的光子; (ii)检测元件的二维阵列用于同时从样品上或样品内的不同位置检测来自第一预定波长带的散射或发射的光子; 然后,(iii)检测元件的二维阵列此后再被使用一次或多次,以同时检测来自样品上或样品内的不同位置的一个或多个另外的预定波长带中的散射或发射的光子。 然后组合在第一时间间隔期间检测元件的二维阵列的输出以产生样本的第一化学图像。 该过程在第二时间间隔期间重复以产生样品的第二化学图像。 基于第一和第二化学图像之间的一个或多个差异来检测在第一时间间隔和第二时间间隔之间在样本中发生的动态变化。