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    • 81. 发明授权
    • Method and apparatus for amplifying nucleic acids
    • 扩增核酸的方法和装置
    • US07943348B2
    • 2011-05-17
    • US12504271
    • 2009-07-16
    • Yoon-kyoung ChoJoon-ho KimKak NamkoongGeun-bae LimJun-hong Min
    • Yoon-kyoung ChoJoon-ho KimKak NamkoongGeun-bae LimJun-hong Min
    • C12Q1/68C12P19/34
    • G01N35/08B01F5/0646B01F5/0647B01F5/0654B01F13/0071B01F2015/0221B01J2219/00783B01J2219/00824B01J2219/00831B01J2219/00833B01J2219/00837B01J2219/0086B01J2219/00873B01J2219/00891B01L3/5027B01L3/502715B01L2300/0809B01L2300/0861B01L2300/0883G01N2035/00366G01N2035/00514
    • A method and apparatus for amplifying nucleic acids. The method includes introducing into a reaction vessel via different inlet channels a reactant aqueous solution containing reactants for nucleic acid amplification and a fluid that is phase-separated from the reactant aqueous solution and does not participate in amplification reaction, creating a plurality of reactant aqueous solution droplets surrounded by the fluid by contacting the reactant aqueous solution with the fluid in the reaction vessel, and amplifying the nucleic acids in the reactant aqueous solution droplets. The apparatus includes a substrate, a reaction vessel formed inside of the substrate, at least one first inlet channel formed inside the substrate, connected to an end of the reaction vessel, and allowing introduction of a reactant aqueous solution containing reactants for nucleic acid amplification into the reaction vessel, a second inlet channel formed inside the substrate, connected to the end of the reaction vessel, and allowing introduction of a fluid that is phase-separated from the reactant aqueous solution and does not participate in amplification reaction into the reaction vessel, and a heating unit installed on the substrate in such a way to thermally contact with the substrate and heating the substrate.
    • 用于扩增核酸的方法和装置。 该方法包括通过不同的入口通道将含有用于核酸扩增的反应物的反应物水溶液和与反应物水溶液相分离并且不参与扩增反应的流体引入反应容器,形成多个反应物水溶液 通过使反应物水溶液与反应容器中的流体接触,并且扩增反应物水溶液液滴中的核酸,由流体包围的液滴。 该装置包括基板,形成在基板内部的反应容器,形成在基板内部的至少一个第一入口通道,与反应容器的端部连接,并且允许将含有用于核酸扩增的反应物的反应物水溶液引入到 反应容器,形成在基板内部的第二入口通道,连接到反应容器的端部,并且允许引入与反应物水溶液相分离并且不参与扩增反应的流体进入反应容器, 以及加热单元,其以与基板热接触并加热基板的方式安装在基板上。
    • 83. 发明授权
    • Apparatus for regulating salt concentration using electrodialysis, lab-on-a-chip including the same, and method of regulating salt concentration using the apparatus
    • 使用电渗析法调节盐浓度的装置,包括该盐浓度的实验室的方法以及使用该装置调节盐浓度的方法
    • US07722751B2
    • 2010-05-25
    • US11440872
    • 2006-05-25
    • Jung-im HanYoung-sun LeeJoon-ho Kim
    • Jung-im HanYoung-sun LeeJoon-ho Kim
    • B01D61/48
    • B01D61/422B01D61/46B01L3/5027G01N2001/4011
    • An apparatus for regulating salt concentration, a lab-on-a-chip including the same and a method of regulating salt concentration using the apparatus are provided. The apparatus includes: a reaction chamber that is defined by a cation exchange membrane and an anion exchange membrane and is selected from the group consisting of a biomolecule extraction chamber, an amplification chamber, a hybridization chamber, and a detection chamber; a first electrode chamber that is defined by the anion exchange membrane and a first electrode and includes an ion exchange medium; and a second electrode chamber that is defined by the cation exchange membrane and a second electrode and includes an ion exchange medium. Even without injecting solutions with different salt concentrations into the reaction chamber by operating pumps and valves for each operation stage, the salt concentration can be reversibly regulated in situ by adjusting the polarity, intensity and application time of a voltage.
    • 提供了一种调节盐浓度的装置,包括该盐浓度的实验室,以及使用该装置调节盐浓度的方法。 该装置包括:由阳离子交换膜和阴离子交换膜限定的反应室,其选自生物分子提取室,扩增室,杂交室和检测室; 由阴离子交换膜和第一电极限定并包括离子交换介质的第一电极室; 以及由阳离子交换膜和第二电极限定并包括离子交换介质的第二电极室。 即使在每个操作阶段通过操作泵和阀都不会将具有不同盐浓度的溶液注入反应室中,可以通过调节电压的极性,强度和施加时间来原位调节盐浓度。
    • 90. 发明授权
    • Sensitivity enhanced biomolecule field effect transistor
    • 灵敏度增强的生物分子场效应晶体管
    • US07151301B2
    • 2006-12-19
    • US11057642
    • 2005-02-14
    • Kyu-tae YooGeun-bae LimJoon-ho KimKak Namkoong
    • Kyu-tae YooGeun-bae LimJoon-ho KimKak Namkoong
    • H01L29/76
    • G01N27/4145
    • There is provided a biomolecule FET enhancing a sensitivity. The biomolecule FET includes a substrate, first and second impurity regions formed on both sides of the substrate, and doped with impurities of a polarity opposite to that of the substrate, a gate formed on the substrate and being in contact with the first and second impurity regions, and a probe biomolecule attached to the gate. A region of the gate adjacent to the first impurity region is wider than a region thereof adjacent to the second impurity region. A density of the probe biomolecule attached to the surface of the gate is increased, and when detecting a level of hybridization of the probe biomolecule and the target biomolecule, its sensitivity is improved.
    • 提供了提高灵敏度的生物分子FET。 生物分子FET包括基板,形成在基板两侧的第一和第二杂质区,并且掺杂极性与基板极性相反的杂质;形成在基板上并与第一和第二杂质接触的栅极 区域,以及连接到门的探针生物分子。 与第一杂质区相邻的栅极的区域比与第二杂质区相邻的区域宽。 附着在栅极表面的探针生物分子的密度增加,并且当检测到探针生物分子和靶生物分子的杂交水平时,其灵敏度得到改善。