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    • 1. 发明申请
    • DEVICE AND METHOD FOR DETERMINING THE CONCENTRATION OF FLUOROPHORES IN A SAMPLE
    • 用于测定样品中荧光素浓度的装置和方法
    • US20120261591A1
    • 2012-10-18
    • US13444027
    • 2012-04-11
    • Rafael EggerJörg Zeiner
    • Rafael EggerJörg Zeiner
    • G01N21/64
    • G01N21/645G01N21/278G01N2201/06113G01N2201/062G01N2201/068
    • A device (10) and a method for analyzing a sample (16) containing fluorophores use a light source (12) emitting light (λex) onto the sample (16), and onto a fluorescence standard (14). The fluorophores of the sample (16), given an immission of light of a first wavelength (λex1), have a first excitation efficiency and, given an immission of light of a second wavelength (λex2), have a second excitation efficiency. The fluorescence standard (14), given the same immissions of light, has a third excitation efficiency and, a fourth excitation efficiency. An optical element (20) which is arranged between the light source (12) and the sample (16) and/or (12) the fluorescence standard (14) adapts, due to its optical property, a first difference between the first excitation efficiency and the second excitation efficiency and a second difference between the third excitation efficiency and the fourth excitation efficiency to each other.
    • 用于分析含有荧光团的样品(16)的装置(10)和方法使用在样品(16)上发射光(λex)的光源(12)和荧光标准品(14)。 给定发射第一波长(λex1)的光的样品(16)的荧光团具有第一激发效率,并且在给出第二波长(λex2)的光的情况下,具有第二激发效率。 给予相同光量的荧光标准(14)具有第三激发效率和第四激发效率。 布置在光源(12)和样品(16)和/或(12)荧光标准品(14)之间的光学元件(20)由于其光学特性而适应第一激发效率 第二激励效率和第三励磁效率与第四励磁效率之间的第二差。
    • 2. 发明授权
    • Device and method for determining the concentration of fluorophores in a sample
    • 用于测定样品中荧光团浓度的装置和方法
    • US09006685B2
    • 2015-04-14
    • US13444027
    • 2012-04-11
    • Rafael EggerJörg Zeiner
    • Rafael EggerJörg Zeiner
    • G01J1/58G01N21/64G01N21/27
    • G01N21/645G01N21/278G01N2201/06113G01N2201/062G01N2201/068
    • A device (10) and a method for analyzing a sample (16) containing fluorophores use a light source (12) emitting light (λex) onto the sample (16), and onto a fluorescence standard (14). The fluorophores of the sample (16), given an immission of light of a first wavelength (λex1), have a first excitation efficiency and, given an immission of light of a second wavelength (λex2), have a second excitation efficiency. The fluorescence standard (14), given the same immissions of light, has a third excitation efficiency and, a fourth excitation efficiency. An optical element (20) which is arranged between the light source (12) and the sample (16) and/or (12) the fluorescence standard (14) adapts, due to its optical property, a first difference between the first excitation efficiency and the second excitation efficiency and a second difference between the third excitation efficiency and the fourth excitation efficiency to each other.
    • 用于分析含有荧光团的样品(16)的装置(10)和方法使用在样品(16)上发射光(λex)的光源(12)和荧光标准品(14)。 给定发射第一波长(λex1)的光的样品(16)的荧光团具有第一激发效率,并且在给出第二波长(λex2)的光的情况下,具有第二激发效率。 给予相同光量的荧光标准(14)具有第三激发效率和第四激发效率。 布置在光源(12)和样品(16)和/或(12)荧光标准品(14)之间的光学元件(20)由于其光学特性而适应第一激发效率 第二激励效率和第三励磁效率与第四励磁效率之间的第二差。