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    • 4. 发明授权
    • System and method for defect detection and photoluminescence measurement of a sample
    • 样品的缺陷检测和光致发光测量的系统和方法
    • US09354177B2
    • 2016-05-31
    • US14212496
    • 2014-03-14
    • KLA-Tencor Corporation
    • Romain Sappey
    • G01N21/64G01N21/88
    • G01N21/6489G01N21/8806G01N21/9501G01N2021/6495G01N2021/8845G01N2201/06113G01N2201/0662
    • Defect detection and photoluminescence measurement of a sample directing a beam of oblique-illumination wavelength light onto a portion of the sample, directing a beam of normal-illumination wavelength light for causing one or more photoluminescing defects of the sample to emit photoluminescent light onto a portion of the sample, collecting defect scattered radiation or photoluminescence radiation from the sample, separating the radiation from the sample into a first portion of radiation in the visible spectrum, a second portion of radiation including the normal-illumination wavelength light, and at least a third portion of radiation including the oblique-illumination wavelength light, measuring one or more characteristics of the first portion, the second portion or the third portion of radiation; detecting one or more photoluminescence defects or one or more scattering defects based on the measured one or more characteristics of the first portion, the second portion or the third portion of radiation.
    • 样品的缺陷检测和光致发光测量将倾斜照明波长的光束引导到样品的一部分上,引导正常照明波长的光束,以使样品的一个或多个光致发光缺陷发射光致发光光到一部分上 收集来自样品的缺陷散射辐射或光致发光辐射,将来自样品的辐射分离成可见光谱中的辐射的第一部分,包括正常照明波长的光的第二部分辐射,以及至少三分之一 测量包括倾斜照明波长光的辐射部分,测量第一部分,第二部分或第三部分辐射的一个或多个特性; 基于所测量的第一部分,第二部分或第三部分辐射的一个或多个特性来检测一个或多个光致发光缺陷或一个或多个散射缺陷。
    • 7. 发明授权
    • Apparatus for monitoring hematocrit levels of blood
    • 用于监测血液血细胞比容水平的装置
    • US5385539A
    • 1995-01-31
    • US906926
    • 1992-06-30
    • David L. Maynard
    • David L. Maynard
    • G01J1/16G01N15/05G01N21/51G01N33/487A61B5/00
    • G01N21/51A61M2205/331A61M2205/3313G01J2001/1647G01N2015/055G01N2021/1738G01N2021/4709G01N2201/0621G01N2201/0662
    • An apparatus and method are provided for measuring the hematocrit level of blood. The presently preferred embodiment comprises a light emitting device which emits an amount of light into a blood sample. This light travels through the blood sample to two light detecting devices positioned relative to the light emitting device in a predetermined geometry such that light emitted from the light emitting device must travel farther to reach one of the light detecting devices than to reach the other, thereby forming a light path from the light emitting device to one light detecting device which is longer than the path from the light emitting device to the other light detecting device. According to the present invention, the amount of light detected by one of the light detecting devices is regulated so that the amount of light detected is constant. Thereafter, the amount of light detected by the unregulated light detecting device is a linear representation of the hematocrit of the blood in the blood sample. The hematocrit sensor may be used within a plasma separator apparatus wherein the hematocrit measurement regulates the operating parameters of the autotransfusion system to maintain the hematocrit of the blood within a predetermined range.
    • 提供了一种用于测量血液血细胞比容水平的装置和方法。 目前优选的实施方案包括将一定量的光发射到血液样品中的发光装置。 该光通过血液样本传播到相对于发光器件相对于预定几何形状定位的两个光检测装置,使得从发光装置发射的光必须更远地行进到达其中一个光检测装置而不是到达另一个,由此 形成从发光器件到比从从发光器件到另一光检测器件的路径长的光检测器件的光路。 根据本发明,调节由一个光检测装置检测的光量,使得检测到的光量是恒定的。 此后,由未调节的光检测装置检测的光量是血液样品中血液的血细胞比容的线性表示。 血细胞比容传感器可以在等离子体分离器装置中使用,其中血细胞比容测量调节自体输血系统的操作参数以将血液的血细胞比容维持在预定范围内。