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    • 4. 发明专利
    • Method for quantitative video-microscopy and associated system therewith and computer software program product
    • 量化视频显微镜及其相关系统及计算机软件程序产品的方法
    • JP2010078611A
    • 2010-04-08
    • JP2009273163
    • 2009-12-01
    • Tripath Imaging Incトライパス イメージング インコーポレイテッド
    • MARCELPOIL RAPHAELGAHM THOMAS
    • G01J3/51G01N21/27G01N21/64G01N33/48G01N33/483G02B21/36G06F19/00G06K9/00G06T7/00G06T7/60
    • G06K9/00127G01N21/27G06T7/60G06T2207/10056
    • PROBLEM TO BE SOLVED: To provide an excellent colorimetric analysis technique with respect to a method for quantitative video-microscopy and associated system, etc. SOLUTION: The method for quantitative video-microscopy determining an amount of at least one molecular specie comprising a sample, each molecular specie being indicated by a dye, is provided. The amount of the molecular specie is determined from the image of a sample captured as image data by a color image acquisition device in a video-microscopy system. An optical density of the sample is first determined in each of a red, green, and blue channels at a particular pixel in the image. A corresponding optical density matrix is thereafter formed for the pixel. The optical density matrix is then multiplied by the inverse of a relative absorption coefficient matrix to form a resultant matrix for the pixel. The relative absorption coefficient matrix includes a relative absorption coefficient for each dye, independent of the sample, in each of the red, green, and blue channels. The resultant matrix thus includes the amount of each molecular specie, as indicated by the respective dye, for the pixel. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为定量视频显微镜和相关系统等提供优异的比色分析技术。解决方案:定量视频显微镜的方法确定至少一个量 提供了包含样品的分子物质,每种分子物质由染料表示。 通过视频显微镜系统中的彩色图像获取装置,从作为图像数据捕获的样本的图像确定分子种类的量。 首先在图像中的特定像素处的红色,绿色和蓝色通道中的每一个中确定样本的光密度。 此后为像素形成对应的光密度矩阵。 然后将光密度矩阵乘以相对吸收系数矩阵的倒数,以形成用于像素的合成矩阵。 相对吸收系数矩阵包括在每个红色,绿色和蓝色通道中的每种染料的独立于样品的相对吸收系数。 所得到的基质因此包括像素所示的每种分子物质的量,如各染料所示。 版权所有(C)2010,JPO&INPIT
    • 6. 发明申请
    • OFFSET SAMPLE TUBE HOLDER
    • 偏移样品管支架
    • US20150298131A1
    • 2015-10-22
    • US14443897
    • 2013-11-20
    • TRIPATH IMAGING, INC.
    • William Alan Fox
    • B01L9/06
    • B01L9/06B01L3/5021B01L2200/021B01L2200/025B01L2200/028
    • A sample tube holder assembly may include a base comprising a base cavity defined therein. The sample tube holder assembly may include at least one first engagement member disposed within the base cavity and a plurality of sample tube holder racks configured to be received within the base cavity, at least one of the sample tube holder racks comprising at least one second engagement member, wherein each of the plurality of sample tube holder racks further comprises at least one sample tube cavity configured to receive a respective sample tube therein. The first and second engagement members may be configured to engage with one another when the plurality of sample tube holder racks are positioned within the base cavity such that the sample tube holder racks are offset at a different depth from one another within the base cavity.
    • 样品管保持器组件可以包括其中限定在其中的基部腔的基部。 样品管保持器组件可以包括设置在基体腔内的至少一个第一接合构件和被配置为容纳在基腔内的多个样品管保持器架,至少一个样品管固定架包括至少一个第二接合 其中所述多个样品管夹持架中的每一个进一步包括至少一个样品管腔,其构造成在其中容纳相应的样品管。 第一和第二接合构件可以被构造成当多个样品管保持器架位于基体腔内时彼此接合,使得样品管保持器架在基腔内彼此不同的深度偏移。
    • 7. 发明申请
    • Method for quantitative video-microscopy and associated system and computer software program product
    • 定量视频显微镜及相关系统和计算机软件程序产品的方法
    • US20030091221A1
    • 2003-05-15
    • US09957446
    • 2001-09-19
    • Tripath Imaging, Inc.
    • Raphael MarcelpoilThomas Gahm
    • G06K009/00
    • G06K9/00127G01N21/27G06T7/60G06T2207/10056
    • A method of determining an amount of at least one molecular specie comprising a sample is provided, each molecular specie being indicated by a dye. The amount of the molecular specie is determined from an image of the sample captured as image data by a color image acquisition device in a video-microscopy system. An optical density of the sample is first determined in each of a red, green, and blue channel at a particular pixel in the image. A corresponding optical density matrix is thereafter formed for that pixel. The optical density matrix is then multiplied by the inverse of a relative absorption coefficient matrix so as to form a resultant matrix for the pixel. The relative absorption coefficient matrix comprises a relative absorption coefficient for each dye, independently of the sample, in each of the red, green, and blue channels. The resultant matrix thus comprises the amount of each molecular specie, as indicated by the respective dye, for that pixel. Associated systems and computer software program products are also provided.
    • 提供了确定包含样品的至少一种分子物质的量的方法,每种分子物质由染料指示。 通过视频显微镜系统中的彩色图像获取装置,从作为图像数据捕获的样本的图像确定分子种类的量。 首先在图像中的特定像素处的红色,绿色和蓝色通道中的每一个中确定样本的光密度。 此后为该像素形成对应的光密度矩阵。 然后将光密度矩阵乘以相对吸收系数矩阵的倒数,以形成像素的合成矩阵。 相对吸收系数矩阵包括在红色,绿色和蓝色通道中的每一个中独立于样品的每种染料的相对吸收系数。 所得到的基质因此包含针对该像素的每种分子物质的量,如各染料所示。 还提供相关系统和计算机软件程序产品。