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    • 6. 发明授权
    • Method and device for the electrophoretic separation of particles, especially of macromolecules, by electrophoresis
    • 通过电泳电泳分离颗粒,特别是大分子的方法和装置
    • US07204922B1
    • 2007-04-17
    • US10049245
    • 1999-07-26
    • Johan-Valentin KahlJulia NissenJoachim RädlerRoman ZantlBerenike MaierUlf RädlerAndres HohnerReinhard Galneder
    • Johan-Valentin KahlJulia NissenJoachim RädlerRoman ZantlBerenike MaierUlf RädlerAndres HohnerReinhard Galneder
    • G01N27/26
    • G01N27/44773B01D57/02G01N27/44747
    • The present invention provides a method for the electrophoretic separation of particles, especially of macromolecules, comprising the steps of applying the particles to be separated on a substrate supported membrane, such that the particles are mobile across the surface of the substrate supported membrane; providing an electrical field such that electrical fields are formed along the surface across which the particles are mobile; and temporarily modifying the electrical field and/or adding a substrate supported membrane having a structured surface, wherein the direction and/or the strength of the electrical field are temporarily modified and/or wherein the substrate supported membrane is structured so that a force is acting on the particles that leads to a movement depending on the length of the particles. Moreover, a substrate is provided, in particular, for supporting a membrane during the performing of the inventive methods, that comprises an optically transparent material. Moreover, the invention provides a substrate supported membrane for carrying out the inventive methods including an inventive substrate as defined in the claims and a fluid lipid membrane. Moreover, the present invention provides a microchannel electrophoresis chamber having at least one channel with a bottom surface including an inventive substrate, and an electrode assembly.
    • 本发明提供了一种用于电泳分离颗粒,特别是大分子的方法,包括以下步骤:将待分离的颗粒施加在基板支撑的膜上,使得颗粒在基底支撑的膜的表面上是可移动的; 提供电场,使得沿着颗粒可移动的表面形成电场; 并临时修改电场和/或添加具有结构化表面的基底支撑膜,其中电场的方向和/或强度被暂时改变和/或其中基底支撑膜被构造成使得力作用 在导致根据颗粒长度的运动的颗粒上。 此外,提供了一种衬底,特别是用于在执行本发明的方法期间支撑膜,其包括光学透明材料。 此外,本发明提供了一种用于实施本发明方法的底物负载膜,包括如权利要求中所定义的本发明基质和流体脂质膜。 此外,本发明提供一种具有至少一个通道的微通道电泳室,底部表面包括本发明的基底和电极组件。
    • 9. 发明授权
    • Valve unit for a microfluid system
    • 用于微流体系统的阀单元
    • US07934519B2
    • 2011-05-03
    • US11943723
    • 2007-11-21
    • Roman Zantl
    • Roman Zantl
    • F16K11/22
    • F16K99/0023B01L3/502738B01L2400/0622F16K99/0001F16K99/0057F16K2099/0084Y10T137/85954Y10T137/86067Y10T137/87249Y10T137/8741
    • The present invention relates to a valve unit for a microfluid system comprising a first and a second fluid reservoir, a flow chamber, a fluid channel array and a conveying means, said first fluid reservoir being, via the flow chamber, in fluidic communication with the second fluid reservoir through the fluid channel array,wherein the valve unit can be brought from a first state to a second state so that, in said first state, a fluid can be conveyed by the conveying means from said first fluid reservoir through the flow chamber in a predetermined direction of flow into the second fluid reservoir, and so that, in said second state, a fluid can be conveyed by the conveying means from said second fluid reservoir through the flow chamber in a predetermined direction of flow into the first fluid reservoir.
    • 本发明涉及一种用于微流体系统的阀单元,其包括第一和第二流体储存器,流动室,流体通道阵列和输送装置,所述第一流体储存器经由流动室与流体连通 通过所述流体通道阵列的第二流体储存器,其中所述阀单元可以从第一状态转到第二状态,使得在所述第一状态下,流体可以由所述输送装置从所述第一流体储存器通过所述流动室输送 在流入第二流体储存器的预定方向上,并且使得在所述第二状态下,流体可以通过输送装置从所述第二流体储存器通过流动室以预定的流动方向输送到第一流体储存器 。