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    • 1. 发明授权
    • Optical rotating power measurement method and optical rotating power measurement apparatus
    • 光旋转功率测量方法和光学旋转功率测量装置
    • US07839505B2
    • 2010-11-23
    • US12034032
    • 2008-02-20
    • Hisashi MasagoTomoyuki FukazawaMutsumi SenumaAtsushi YamadaYuji Fujisawa
    • Hisashi MasagoTomoyuki FukazawaMutsumi SenumaAtsushi YamadaYuji Fujisawa
    • G01J4/00
    • G01N21/23G01N21/0332
    • An optical rotating power measurement method comprising: an optical rotating power data acquisition step of starting measurement of the optical rotating power of the sample in a measurement apparatus during a temperature changing process where a controller controls the temperature of the sample such that the temperature reaches the predetermined temperature and of obtaining temperature data and optical rotating power data of the sample as time passes during the temperature changing process; and a data processing step of obtaining a straight line relationship data between the temperature data and the optical rotating power data, by using the fact that the optical rotating power of the sample is proportional to a measurement temperature; wherein the optical rotating power data of the sample at the predetermined temperature or the temperature dependence data of the optical rotating power of the sample is determined based on the straight line relationship data.
    • 一种光学旋转功率测量方法,包括:光学旋转功率数据获取步骤,其在温度变化过程中开始测量样品的光学旋转功率,其中控制器控制样品的温度使得温度达到 在温度变化过程中随着时间经过,获得样品的温度数据和光学旋转功率数据; 以及数据处理步骤,通过使用样品的光学旋转功率与测量温度成比例的事实来获得温度数据和光学旋转功率数据之间的直线关系数据; 其中,基于直线关系数据确定样品在预定温度下的光学旋转功率数据或样品的光学旋转功率的温度依赖性数据。
    • 2. 发明申请
    • Optical Rotating Power Measurement Method And Optical Rotating Power Measurement Apparatus
    • 光学旋转功率测量方法和光学旋转功率测量仪器
    • US20080204751A1
    • 2008-08-28
    • US12034032
    • 2008-02-20
    • Hisashi MasagoTomoyuki FukazawaMutsumi SenumaAtsushi YamadaYuji Fujisawa
    • Hisashi MasagoTomoyuki FukazawaMutsumi SenumaAtsushi YamadaYuji Fujisawa
    • G01J4/00
    • G01N21/23G01N21/0332
    • An optical rotating power measurement method comprising: an optical rotating power data acquisition step of starting measurement of the optical rotating power of the sample in a measurement apparatus during a temperature changing process where a controller controls the temperature of the sample such that the temperature reaches the predetermined temperature and of obtaining temperature data and optical rotating power data of the sample as time passes during the temperature changing process; and a data processing step of obtaining a straight line relationship data between the temperature data and the optical rotating power data, by using the fact that the optical rotating power of the sample is proportional to a measurement temperature; wherein the optical rotating power data of the sample at the predetermined temperature or the temperature dependence data of the optical rotating power of the sample is determined based on the straight line relationship data.
    • 一种光学旋转功率测量方法,包括:光学旋转功率数据获取步骤,其在温度变化过程中开始测量样品的光学旋转功率,其中控制器控制样品的温度使得温度达到 在温度变化过程中随着时间经过,获得样品的温度数据和光学旋转功率数据; 以及数据处理步骤,通过使用样品的光学旋转功率与测量温度成比例的事实来获得温度数据和光学旋转功率数据之间的直线关系数据; 其中,基于直线关系数据确定样品在预定温度下的光学旋转功率数据或样品的光学旋转功率的温度依赖性数据。
    • 5. 发明授权
    • Depth measuring apparatus
    • 深度测量装置
    • US07019849B2
    • 2006-03-28
    • US10799598
    • 2004-03-15
    • Takashi YamanishiHisashi Masago
    • Takashi YamanishiHisashi Masago
    • G01B11/00
    • G02B21/0024G01B11/06
    • A depth measuring apparatus is disclosed that comprises a mover for moving in an optical axis direction an objective lens for condensing a parallel light beam from a light emitter onto a measurement spot of a sample and converting light from the measurement spot to a parallel light beam, image forming lens for projecting light from the measurement spot obtained via the objective lens, aperture for passing only light from the focal point position of the objective lens, a surface scattered light information acquirer for detecting, while the objective lens is being moved, the amount of light passing through the aperture and having an excitation wavelength of the test subject, a fluorescence information acquirer for detecting, while the objective lens is being moved, the amount of light passing through the aperture and having a fluorescence wavelength of the subject, and a distance information acquirer for obtaining distance information between a position of the objective lens where the detection value of surface scattered light by means of the surface scattered light information acquirer is maximum and a position of the objective lens where the detection value of fluorescence by means of the fluorescence information acquirer is maximum, wherein the depth of the test subject within the sample is obtained based on the acquired distance information with a position on a surface of the sample as a reference.
    • 公开了一种深度测量装置,其包括用于在光轴方向上移动用于将来自发光体的平行光束聚集到样品的测量点上并将来自测量点的光转换成平行光束的物镜的移动器, 用于投射来自通过物镜获得的测量点的光的图像形成透镜,用于仅透过来自物镜的焦点位置的光的孔,用于在物镜移动时检测量的表面散射光信息获取器, 的光通过该孔并具有受检者的激发波长的荧光信息获取器,用于在物镜被移动时检测通过该孔并具有该受检者的荧光波长的光量,以及 距离信息获取器,用于获得物镜的位置之间的距离信息, 通过表面散射光信息获取器的表面散射光的切割值最大,并且通过荧光信息获取器的荧光检测值的物镜的位置最大,其中样本内的测试对象的深度 基于获取的距离信息获得,其中样品的表面上的位置作为参考。
    • 6. 发明申请
    • Microcell And Microcell Holder
    • 微电池和微电池座
    • US20070279573A1
    • 2007-12-06
    • US11758741
    • 2007-06-06
    • Kazuharu OkuboMitsuo WatanabeIkuo FuchigamiAkio WadaHisashi Masago
    • Kazuharu OkuboMitsuo WatanabeIkuo FuchigamiAkio WadaHisashi Masago
    • G02F1/1339
    • G01N21/03G01N21/253G01N2021/0346G01N2021/0367G01N2021/0378
    • A microcell used in analysis of very small amounts of liquid samples, the microcell comprising: a plate spacer having a plurality of small holes with notches widening toward sample injection openings in a side wall; and window plates made of a material passing measuring light, disposed to face each other on either side of the spacer to cover the plurality of small holes from the front and the back; wherein spaces formed by the plurality of small holes of the spacer and the window plates serve as a plurality of cell chambers for containing the liquid samples; and a dimension of the plurality of small holes and the thickness of the spacer are determined in accordance with the amounts of the liquid samples, and a dimension of parts joining the notches and the plurality of small holes is smaller than the dimension of the plurality of small holes.
    • 一种用于分析非常少量液体样品的微细胞,所述微细胞包括:板状间隔物,其具有多个小孔,所述小孔具有向侧壁中的样品注射开口加宽的凹口; 以及由通过测量光的材料制成的窗板,所述窗口被设置为在间隔件的任一侧彼此面对以从前部和后部覆盖多个小孔; 其中由所述间隔件和所述窗板的所述多个小孔形成的空间用作容纳所述液体样品的多个单元室; 并且根据液体样品的量来确定多个小孔的尺寸和间隔物的厚度,并且连接凹口和多个小孔的部分的尺寸小于多个小孔的尺寸 小洞。