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    • 4. 发明授权
    • Biosensor
    • 生物传感器
    • US06916410B2
    • 2005-07-12
    • US10147213
    • 2002-05-15
    • Koji KatsukiKatsumi HamamotoYuji YagiTakao Fukuoka
    • Koji KatsukiKatsumi HamamotoYuji YagiTakao Fukuoka
    • C12Q1/00G01N27/327
    • C12Q1/001
    • A biosensor is constituted by disposing an electrode system including a working electrode and a counter electrode on a substrate, forming an inorganic particulate-containing layer containing inorganic particulates thereon, and forming a reagent layer containing a reagent thereon. The inorganic particulates make it possible to prevent impurities in a sample from being in contact with the electrode system and being adsorbed therein, so that measurement is performed with high precision. The inorganic particulate-containing layer can be formed by applying a dispersion system of inorganic particulates and drying them, and it is preferable that the inorganic particulates are contained in the form of aggregates.
    • 生物传感器通过在基板上设置包括工作电极和对电极的电极系统构成,在其上形成含有无机微粒的无机颗粒含有层,并在其上形成含有试剂的试剂层。 无机颗粒使得可以防止样品中的杂质与电极系统接触并被吸附,从而以高精度进行测量。 无机颗粒层可以通过涂布无机颗粒的分散体并进行干燥而形成,优选以聚集体的形式含有无机微粒。
    • 9. 发明授权
    • Analysis method for substance
    • 物质分析方法
    • US07374873B2
    • 2008-05-20
    • US11716553
    • 2007-03-12
    • Takao FukuokaKeitaro NakamuraYasushige Mori
    • Takao FukuokaKeitaro NakamuraYasushige Mori
    • G01N33/551
    • G01N21/658G01N21/35G01N21/3577G01N33/585
    • A method for analyzing a substance, comprising: a step of obtaining a dispersion complex by co-existing fine particles having a dispersion property higher than that of lyophobic fine particles in a dispersion phase of the lyophobic fine particles at a concentration sufficient for covering a periphery of a lyophobic fine particle group; a step of contacting the dispersion complex and a fluid containing an analyte; and a step of analyzing the analyte using an optical measuring means, wherein the lyophobic fine particles exist in the dispersion phase in a group for providing the surface enhancing effect. The method is effective for analysis of a slight amount substance or a low concentration substance.
    • 一种分析物质的方法,其特征在于,包括:在所述疏液性细颗粒的分散相中,以足以覆盖周边的浓度的分散性高于疏液性微粒的分散性的共存微粒,得到分散络合物的工序 的疏液微粒组; 使分散体和含有分析物的流体接触的步骤; 以及使用光学测量装置分析分析物的步骤,其中疏水性细颗粒存在于用于提供表面增强效果的组中的分散相中。 该方法对于微量物质或低浓度物质的分析是有效的。
    • 10. 发明授权
    • Method for analyzing substance
    • 物质分析方法
    • US07198957B2
    • 2007-04-03
    • US10469932
    • 2001-03-09
    • Takao FukuokaKeitaro NakamuraYasushige Mori
    • Takao FukuokaKeitaro NakamuraYasushige Mori
    • G01N33/553
    • G01N21/658G01N21/35G01N21/3577G01N33/585
    • A method for analyzing a substance, comprising: a step of obtaining a dispersion complex by co-existing fine particles having a dispersion property higher than that of lyophobic fine particles in a dispersion phase of the lyophobic fine particles at a concentration sufficient for covering a periphery of a lyophobic fine particle group; a step of contacting the dispersion complex and a fluid containing an analyte; and a step of analyzing the analyte using an optical measuring means, wherein the lyophobic fine particles exist in the dispersion phase in a group for providing the surface enhancing effect. The method is effective for analysis of a slight amount substance or a low concentration substance.
    • 一种分析物质的方法,其特征在于,包括:在所述疏液性细颗粒的分散相中,以足以覆盖周边的浓度的分散性高于疏液性微粒的分散性的共存微粒,得到分散络合物的工序 的疏液微粒组; 使分散体和含有分析物的流体接触的步骤; 以及使用光学测量装置分析分析物的步骤,其中疏水性细颗粒存在于用于提供表面增强效果的组中的分散相中。 该方法对于微量物质或低浓度物质的分析是有效的。