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    • 1. 发明授权
    • Fluorescent estimating apparatus, fluorescent estimating method, and fluorescent measuring apparatus
    • 荧光估计装置,荧光估计方法和荧光测定装置
    • US08481973B2
    • 2013-07-09
    • US13196191
    • 2011-08-02
    • Yoshiko Iida
    • Yoshiko Iida
    • G01N21/64
    • G01N21/645G01N2021/6421
    • This invention provides a technique for efficiently estimating spectral radiance factors of fluorescence of a sample. To this end, for a sample which contains a fluorescent substance, first spectral reflectance data and second spectral reflectance data are obtained by making two different variable-angle measurements using a general colorimeter under a white light source. Ratios n of the first spectral reflectance data to the second spectral reflectance data in a long-wavelength spectrum range outside a fluorescent spectrum range of the sample are calculated. Then, difference data between spectral reflectance data as results of multiplying the second spectral reflectance data by the ratios n, and the first spectral reflectance data are calculated. The difference data are divided by values obtained by subtracting 1 from the ratios n, thereby calculating spectral reflectances of fluorescence of the sample, that is, spectral radiance factors.
    • 本发明提供了一种用于有效估计样品的荧光的光谱辐射系数的技术。 为此,对于含有荧光物质的样品,通过在白光源下使用通用色度计进行两个不同的可变角度测量来获得第一光谱反射率数据和第二光谱反射率数据。 计算在样品的荧光光谱范围外的长波长光谱范围内的第一光谱反射率数据与第二光谱反射率数据的比率n。 然后,计算作为将第二光谱反射率数据乘以比率n的结果的光谱反射率数据与第一光谱反射率数据之间的差分数据。 将差分数据除以通过从比率n中减去1获得的值,从而计算样品的荧光的光谱反射率,即光谱辐射系数。
    • 6. 发明申请
    • Fluorescent Estimating Apparatus, Fluorescent Estimating Method, and Fluorescent Measuring Apparatus
    • 荧光估计装置,荧光估计方法和荧光测量装置
    • US20120043478A1
    • 2012-02-23
    • US13196191
    • 2011-08-02
    • Yoshiko Iida
    • Yoshiko Iida
    • G01N21/64
    • G01N21/645G01N2021/6421
    • This invention provides a technique for efficiently estimating spectral radiance factors of fluorescence of a sample. To this end, for a sample which contains a fluorescent substance, first spectral reflectance data and second spectral reflectance data are obtained by making two different variable-angle measurements using a general colorimeter under a white light source. Ratios n of the first spectral reflectance data to the second spectral reflectance data in a long-wavelength spectrum range outside a fluorescent spectrum range of the sample are calculated. Then, difference data between spectral reflectance data as results of multiplying the second spectral reflectance data by the ratios n, and the first spectral reflectance data are calculated. The difference data are divided by values obtained by subtracting 1 from the ratios n, thereby calculating spectral reflectances of fluorescence of the sample, that is, spectral radiance factors.
    • 本发明提供了一种用于有效估计样品的荧光的光谱辐射系数的技术。 为此,对于含有荧光物质的样品,通过在白光源下使用通用色度计进行两个不同的可变角度测量来获得第一光谱反射率数据和第二光谱反射率数据。 计算在样品的荧光光谱范围外的长波长光谱范围内的第一光谱反射率数据与第二光谱反射率数据的比率n。 然后,计算作为将第二光谱反射率数据乘以比率n的结果的光谱反射率数据与第一光谱反射率数据之间的差分数据。 将差分数据除以通过从比率n中减去1获得的值,从而计算样品的荧光的光谱反射率,即光谱辐射系数。