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    • 92. 发明授权
    • Optical information analyzer and optical information analysis method
    • 光信息分析仪和光信息分析方法
    • US08482723B2
    • 2013-07-09
    • US13337848
    • 2011-12-27
    • Ken TsukiiKenichi KimuraToru TakahashiJie Xu
    • Ken TsukiiKenichi KimuraToru TakahashiJie Xu
    • G01N21/00
    • G01N15/1434G01N2015/1452
    • An optical information analyzer (10) includes a light emitting unit (30) that emits light (excitation light) (L0) to a sample (S), a transmission light receiving unit (50) that receives transmission light (L1), which is the excitation light passing through the sample (S), and detects the received transmission light as a transmission light signal (SG1), scattered light/fluorescence receiving units (60) and (70) that are provided at a plurality of positions, receive side scattered light/fluorescence components (L2) and (L3) from the sample (S), and detect the received side scattered light/fluorescence components as scattered light/fluorescence signals (SG2) and (SG3), and an analyzing unit (90) that measures the optical information of the sample (S) on the basis of the detected scattered light/fluorescence signals (SG2) and (SG3) and the detected transmission light signal (SG1) and analyzes the sample (S) on the basis of the measured optical information.
    • 光信息分析装置(10)包括对样本(S)发光(激发光)(L0)的发光单元(30),接收透射光(L1)的透射光接收单元(50) 通过样品(S)的激发光,并且检测作为透射光信号(SG1)的接收的透射光,设置在多个位置的散射光/荧光接收单元(60)和(70),接收侧 检测来自样品(S)的散射光/荧光成分(L2)和(L3),并检测作为散射光/荧光信号(SG2)和(SG3)的接收侧散射光/荧光成分,以及分析单元(90) 根据检测到的散射光/荧光信号(SG2)和(SG3)和检测到的透射光信号(SG1)来测量样品(S)的光学信息,并基于样品(S) 测量光信息。
    • 95. 发明授权
    • Method for optical measurement and optical measurement apparatus
    • 光学测量方法和光学测量装置
    • US08300225B2
    • 2012-10-30
    • US13092740
    • 2011-04-22
    • Ken TsukiiJie XuKenichi Kimura
    • Ken TsukiiJie XuKenichi Kimura
    • G01N21/00
    • G01N21/645G01N15/1434G01N15/1459
    • An optical measurement apparatus can be provided, in which the sample is optically measured without loss of the illuminating light with high sensitivity. A glass plate as the transparent member 50 is placed in the interface between the end face 43 of the optical waveguide 40 guiding the illuminating light L generated by the laser light source 20 and the wall face of the capillary 30. According to the above feature, the air layer is prevented from existing in the interface between the end face 43 of the optical fiber 40 and the wall face of the capillary 30, thus the sample S can be optically measured with high sensitivity and few variability without causing the loss of the illuminating light L.
    • 可以提供光学测量装置,其中在没有损失高灵敏度的照明光的情况下光学测量样品。 作为透明构件50的玻璃板被放置在引导由激光光源20产生的照明光L和毛细管30的壁面的光波导40的端面43之间的界面中。根据上述特征, 防止空气层存在于光纤40的端面43与毛细管30的壁面之间的界面中,因此可以以高灵敏度和少量的变化光学测量样品S,而不会导致照射损失 光L.