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    • 94. 发明授权
    • Method for detecting the presence of anisotropic crystals in undiluted whole blood
    • 检测未稀释全血中各向异性晶体存在的方法
    • US08481282B2
    • 2013-07-09
    • US13190242
    • 2011-07-25
    • Robert A. LevineDarryn W. UnfrichtStephen C. WardlawBenjamin Ports
    • Robert A. LevineDarryn W. UnfrichtStephen C. WardlawBenjamin Ports
    • C12Q1/04
    • G01N21/23G01N21/6458
    • An apparatus and method for detecting the presence of anisotropic crystals within a biologic fluid sample is provided. The method includes the steps of: a) disposing the sample within a sample chamber in a sample layer having a height not greater than about fifteen microns (15μ); b) disposing the sample layer within the sample chamber between a polarizing filter and an analyzing filter; c) disposing the polarizing filter, sample chamber, and analyzing filter in a configuration relative to a light source such that polarized light passes through the sample, and subsequently impinges on the analyzing filter; and d) wherein polar orientations of the polarizing filter and the analyzing filter are such that the polarized light will not pass through the analyzing filter, and light passing through an anisotropic crystal disposed within the sample will pass through the analyzing filter and appear as a point of light.
    • 提供了一种用于检测生物液体样品中各向异性晶体的存在的装置和方法。 该方法包括以下步骤:a)将样品置于具有不大于约15微米(15mu)的高度的样品层中的样品室内; b)将样品层置于样品室内,在偏振滤光片和分析滤光片之间; c)将偏振滤光器,样品室和分析滤光片相对于光源配置成使得偏振光通过样品,随后撞击在分析滤光片上; 和d)其中偏振滤光器和分析滤光器的极性取向使得偏振光不会通过分析滤光器,并且穿过设置在样品内的各向异性晶体的光将通过分析滤光器并显现为点 的光。
    • 95. 发明授权
    • Method for determining at least one hemoglobin related parameter of a whole blood sample
    • 用于确定全血样品的至少一种血红蛋白相关参数的方法
    • US08472693B2
    • 2013-06-25
    • US13051705
    • 2011-03-18
    • Graham DavisStephen C. WardlawRobert A. LevineDarryn W. UnfrichtNiten LalpuriaPaul G. Mitsis
    • Graham DavisStephen C. WardlawRobert A. LevineDarryn W. UnfrichtNiten LalpuriaPaul G. Mitsis
    • G06K9/00
    • G01N33/726G01N15/1475G01N2015/0073
    • A method and apparatus for determining at least one hemoglobin related parameter of a whole blood sample is provided. The method includes the steps of: a) depositing the sample into an analysis chamber adapted to quiescently hold the sample for analysis, the chamber defined by an interior surface of a first panel, and an interior surface of a second panel, and the chamber has a height extending between the interior surfaces of the panels, wherein the chamber is configured to increase the oxygenation state of the sample to a substantially oxygenated state within a predetermined amount of time after entry into the chamber; b) imaging the at least one red blood cell contacting the interior surfaces, and producing image signals; c) determining an optical density of at least a portion of the imaged red blood cell contacting both interior surfaces; and d) determining the at least one hemoglobin related parameter of the red blood cell contacting the interior surfaces, using the determined optical density and a molar extinction coefficient for oxygenated hemoglobin.
    • 提供了一种用于确定全血样品的至少一种血红蛋白相关参数的方法和装置。 该方法包括以下步骤:a)将样品沉积到适于静态保持样品进行分析的分析室中,所述室由第一面板的内表面和第二面板的内表面限定,并且所述室具有 在所述面板的内表面之间延伸的高度,其中所述腔被配置为在进入所述腔室之后的预定量的时间内将所述样品的氧合状态增加到基本上氧合状态; b)对与内表面接触的至少一个红细胞进行成像,并产生图像信号; c)确定接触两个内表面的成像红细胞的至少一部分的光密度; 以及d)使用确定的光密度和氧合血红蛋白的摩尔消光系数来确定与内表面接触的红细胞的至少一种血红蛋白相关参数。
    • 100. 发明授权
    • Method and apparatus for detecting and counting platelets individually and in aggregate clumps
    • 用于单独和聚集团中血小板检测和计数的方法和装置
    • US07929121B2
    • 2011-04-19
    • US12408500
    • 2009-03-20
    • Stephen C. WardlawRobert A. LevineNiten V. Lalpuria
    • Stephen C. WardlawRobert A. LevineNiten V. Lalpuria
    • G01N33/48
    • G01N33/49G01N15/147G01N15/1475G01N2015/0076G01N2015/008G01N2015/0084G01N2015/0092G01N2015/1486
    • A method for enumerating platelets within a blood sample is provided. The method includes the steps of: 1) depositing the sample into an analysis chamber adapted to quiescently hold the sample for analysis, the chamber defined by a first panel and a second panel, both of which panels are transparent; 2) admixing a colorant with the sample, which colorant is operative to cause the platelets to fluoresce upon exposure to one or more predetermined first wavelengths of light; 3) illuminating at least a portion of the sample containing the platelets at the first wavelengths; 4) imaging the sample, including producing image signals indicative of fluorescent emissions from the platelets, which fluorescent emissions have an intensity; 5) identifying the platelets by their fluorescent emissions, using the image signals; 6) determining an average fluorescent emission intensity value for the individual platelets identified within the sample; 7) identifying clumps of platelets within the sample using one or more of their fluorescent emissions, area, shape, and granularity; and 8) enumerating platelets within each platelet clump using the average fluorescent emission intensity value determined for the individual platelets within the sample.
    • 提供了一种用于列举血液样品中的血小板的方法。 该方法包括以下步骤:1)将样品沉积到适于静态保持样品进行分析的分析室中,所述室由第一面板和第二面板限定,两个面板都是透明的; 2)将着色剂与所述样品混合,所述着色剂在暴露于一个或多个预定的第一波长的光时会使血小板发荧光; 3)以第一波长照射含有血小板的样品的至少一部分; 4)对样品进行成像,包括产生指示来自血小板的荧光发射的图像信号,该荧光发射具有强度; 5)使用图像信号通过荧光发射识别血小板; 6)确定样品内识别的各个血小板的平均荧光发射强度值; 7)使用其荧光发射,面积,形状和粒度中的一种或多种来鉴定样品中的血小板团块; 和8)使用为样品中的各个血小板确定的平均荧光发射强度值来列举每个血小板聚集体内的血小板。