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    • 5. 发明授权
    • Electrophoresis unit and electrophoretic analysis method
    • 电泳单元和电泳分析方法
    • US07943027B2
    • 2011-05-17
    • US11979570
    • 2007-11-06
    • Motohiro YamazakiRyoji InabaSatoshi TakahashiTomohiro ShojiTakeshi OhuraTakashi Gomi
    • Motohiro YamazakiRyoji InabaSatoshi TakahashiTomohiro ShojiTakeshi OhuraTakashi Gomi
    • G01N27/447G01N27/453
    • B01D57/02C07K1/26G01N27/44721G01N27/44782
    • The object of the present invention is that a dynamic range is extended in an electrophoresis unit and concentration differences among a plurality of samples measured simultaneously are increased.An irradiation time to the samples is adjusted during analysis without changing a sampling time. By shortening the irradiation time, a fluorescence amount of the samples is reduced to cause signal intensity detected by a detector to physically decrease. If the irradiation time is very short (several 100 msec), the irradiation time and fluorescence intensity are in a direct proportional relationship. It is known that, if the irradiation time is reduced to 1/n, the fluorescence intensity, that is, signal intensity to be detected will be 1/n. Thus, for data whose irradiation time is reduced to 1/n during analysis, data obtained by multiplying a substantially measured value by n is used for data analysis as a true value to be originally acquired.
    • 本发明的目的是在电泳单元中扩展动态范围,同时增加多个样本之间的浓度差。 在分析过程中调整样品的照射时间,而不改变采样时间。 通过缩短照射时间,减少样品的荧光量,使得由检测器检测出的信号强度物理降低。 如果照射时间非常短(几百毫秒),照射时间和荧光强度成正比关系。 已知如果照射时间减少到1 / n,则荧光强度即被检测信号强度为1 / n。 因此,对于在分析期间其照射时间减少到1 / n的数据,将通过将基本上测量的值乘以n获得的数据用作数据分析作为最初获取的真实值。
    • 8. 发明申请
    • CAPILLARY ELECTROPHORESIS APPARATUS
    • 毛细管电泳装置
    • US20120043211A1
    • 2012-02-23
    • US13263958
    • 2010-04-08
    • Yasutaka OtsukaToshiyuki SakuraiTomohiro ShojiTakeshi Ohura
    • Yasutaka OtsukaToshiyuki SakuraiTomohiro ShojiTakeshi Ohura
    • G01N27/447C25B15/02
    • G01N27/44743G01N27/44713
    • Provided is a capillary electrophoresis apparatus capable of avoiding electric discharge even when a conductive component is arranged near a cathode end of a capillary. The capillary electrophoresis apparatus of the present invention has a structure in which a spatial distance and a creeping distance between an electrode attached to the cathode end of the capillary and the conductive component are large even when the conductive component is arranged near the cathode end of the capillary. That is to say, the capillary electrode, which protrudes from a lower surface of the load header, penetrates through a space between the load header and an anti-evaporation film and further penetrates through a capillary hole formed on the anti-evaporation film to extend into a container. At least a portion exposed to the space between the load header and the anti-evaporation film of the capillary electrode is covered with an insulating member.
    • 提供一种毛细管电泳装置,即使在导电性成分配置在毛细管的阴极端附近也能够避免放电。 本发明的毛细管电泳装置具有这样的结构,即使在导电部件靠近阴极端附近的情况下,附着于毛细管的阴极端的电极与导电部件之间的空间距离和蠕变距离也较大 毛细管。 也就是说,从负载集管的下表面突出的毛细管电极穿过负载集管和防蒸发膜之间的空间,并且进一步穿透形成在防蒸发膜上的毛细孔,以延伸 进入容器 暴露于负载集管和毛细管电极的防蒸发膜之间的空间的至少一部分被绝缘部件覆盖。
    • 10. 发明授权
    • Biopolymer optical analysis device and method
    • 生物聚合物光学分析装置及方法
    • US09562809B2
    • 2017-02-07
    • US13812801
    • 2011-07-21
    • Satoshi OzawaTakashi AnazawaRena AkahoriSatoshi TakahashiTakeshi OhuraMasashi Kiguchi
    • Satoshi OzawaTakashi AnazawaRena AkahoriSatoshi TakahashiTakeshi OhuraMasashi Kiguchi
    • G01J3/02B82Y5/00B82Y15/00G01N33/487G01N21/65
    • G01J3/0267B82Y5/00B82Y15/00C12Q1/6869G01N21/658G01N33/48721C12Q2565/631C12Q2565/632
    • The present invention provides a device and method for analyzing the characteristics of a biopolymer with excellent mechanical stability, high spatial resolution and sensitivity using a simple device construction. Specifically, the Raman scattered light of a biopolymer is measured and the properties of monomer units forming the biopolymer are analyzed by using a biopolymer property analysis chip (100a) characterized by comprising: a solid substrate (110); at least one nanopore (120) disposed in the solid substrate (110); and one or more electrically conductive thin films (130a, 130b) disposed on the solid substrate (110). The biopolymer property analysis chip (100a) is characterized in that the electrically conductive thin films (130a, 130b) are disposed partially on the solid substrate (110) where the nanopore (120) is formed and a biopolymer which has penetrated into the nanopore (120) is caused to generate Raman scattered light by means of irradiation with external light.
    • 本发明提供一种使用简单的装置结构分析具有优异机械稳定性,高空间分辨率和灵敏度的生物聚合物的特性的装置和方法。 具体地,测量生物聚合物的拉曼散射光,并通过使用生物聚合物性质分析芯片(100a)分析形成生物聚合物的单体单元的性质,其特征在于包括:固体基材(110); 设置在所述固体基板(110)中的至少一个纳米孔(120); 以及设置在固体基板(110)上的一个或多个导电薄膜(130a,130b)。 生物聚合物性质分析芯片(100a)的特征在于,导电薄膜(130a,130b)部分地设置在形成有纳米孔(120)的固体基板(110)上,并且已经渗透到纳米孔中的生物聚合物 120)通过外部光照射产生拉曼散射光。