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    • 5. 发明授权
    • Optical measuring method of expiration components
    • 过期组分的光学测量方法
    • US5754288A
    • 1998-05-19
    • US694342
    • 1996-08-08
    • Hiroshi YamamotoHarumi UenoyamaXiaoming DouYung Xiang WangKentaro Shimada
    • Hiroshi YamamotoHarumi UenoyamaXiaoming DouYung Xiang WangKentaro Shimada
    • G01J3/44G01N21/65G01N33/497
    • G01N21/65G01J3/44
    • As to respective expiration components to be measured, wavelengths having excellent correlations between component concentrations and Raman spectral intensity values are previously selected as measuring wavelengths which are specific to the components, an expiration specimen is irradiated with Raman excitation light, Raman spectra at the measuring wavelength which is specific to nitrogen and those at the measuring wavelengths previously selected for the components to be measured respectively are measured, Raman spectral intensity ratios of the components to the Raman spectral intensity of nitrogen are obtained, and the respective expiration components are quantitatively analyzed through a calibration curve which is previously prepared as to the Raman spectral intensity ratios of the respective components to nitrogen and concentrations. It is possible to provide a measuring method utilizing Raman spectroscopy, which can directly determine intra- expiratory components in a short time with no requirement for expendable items.
    • 对于要测量的各个到期组分,预先选择组分浓度和拉曼光谱强度值之间具有优异相关性的波长作为测定组分特有的波长,用拉曼激发光照射呼出样品,在测量波长处照射拉曼光谱 测量分别对于氮和特定于测量波长的测量波长的测量波长,并获得组分与氮的拉曼光谱强度的拉曼光谱强度比,并通过一个 校准曲线,其预先制备了各组分对氮和浓度的拉曼光谱强度比。 可以提供使用拉曼光谱的测量方法,其可以在短时间内直接确定呼气成分,而不需要消耗品。
    • 6. 发明授权
    • Method of and apparatus for measuring absorbance, component
concentration or specific gravity of liquid sample
    • 用于测量液体样品的吸光度,组分浓度或比重的方法和仪器
    • US5696580A
    • 1997-12-09
    • US434717
    • 1995-05-04
    • Hiroko KuboXu KexinHarumi Uenoyama
    • Hiroko KuboXu KexinHarumi Uenoyama
    • G01N21/03G01N21/41G01N21/00
    • G01N21/4133G01N21/0303
    • A measuring beam is incident upon a triangular cell storing a liquid sample, and transmitted light thereof is received by a linear sensor so that both transmitted light intensity and a position of the beam are detected. A refractive index calculating part calculates refractive indices from the position detected by the linear sensor, while an absorbance calculating part calculates absorbance values dependent on component concentration values correcting influence by transmittance change at the triangular cell through the transmitted light intensity values and the refractive indices of the sample calculated at the refractive index calculating part. A component concentration calculating part performs a multivariate analytical operation on the basis of the absorbance values dependent on the component concentration values at a plurality of measuring wavelengths calculated at the absorbance calculating part.
    • 测量光束入射在存储液体样品的三角形单元上,并且其透射光被线性传感器接收,从而检测透射光强度和光束位置。 折射率计算部分从由线性传感器检测的位置计算折射率,而吸光度计算部分通过透射光强度值和透射光强度值来计算依赖于三角形单元的透射率变化校正影响的成分浓度值的吸光度值, 在折射率计算部分计算的样本。 成分浓度计算部根据在吸光度计算部计算出的多个测定波长的成分浓度值的吸光度值,进行多变量分析。
    • 7. 发明授权
    • Apparatus for immune analysis
    • 免疫分析仪器
    • US06887430B1
    • 2005-05-03
    • US08985816
    • 1999-03-12
    • Xiaoming DouYoshinori YamaguchiHarumi Uenoyama
    • Xiaoming DouYoshinori YamaguchiHarumi Uenoyama
    • G01N21/55G01N21/17
    • G01N21/7703G01N21/552
    • A total reflection cell has a total reflection prism on at least one surface thereof. A mixed solution containing a gold colloid labelled antibody which is adsorbed on a gold colloid is stored in the total reflection cell, and a sample solution containing an antigen causing antigen-antibody reaction with the antibody is added thereto for forming a gold colloid labelled immune complex. A measuring beam is introduced into the total reflection prism from an incident optical system at an angle θ of incidence causing total reflection and an outgoing beam from the total reflection prism is received by a measuring optical system, thereby measuring absorption by the gold colloid labelled immune complex and carrying out qualification and determination of the antigen.
    • 全反射单元在其至少一个表面上具有全反射棱镜。 将含有被吸附在金胶体上的金胶体标记抗体的混合溶液储存在全反射池中,向其中加入含抗原抗体与抗体反应的抗原的样品溶液,形成金胶体标记的免疫复合物 。 测量光束从入射光学系统以入射角度θ被引入全反射棱镜,从而引起全反射,并且来自全反射棱镜的输出光束被测量光学系统接收,从而测量金胶体标记的免疫吸收 复杂并进行抗原的鉴定和鉴定。