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    • 1. 发明授权
    • Sample analysis system with chip-based electrophoresis device
    • 带芯片电泳装置的样品分析系统
    • US06942777B2
    • 2005-09-13
    • US09880801
    • 2001-06-15
    • Shu-Hui ChenGwo-Bin LeeChung-Shi YangYi-Hung LinWan-Chou SungGuan-Ruey Huang
    • Shu-Hui ChenGwo-Bin LeeChung-Shi YangYi-Hung LinWan-Chou SungGuan-Ruey Huang
    • G01N27/447C25B11/00G01N27/453
    • G01N27/44743G01N27/44721G01N27/44791
    • The present invention relates to a sample analysis system with chip-based electrophoresis device, particularly, the chip electrophoresis is connected to the dynamic flow-based auto-sampling device to introduce the sample into the chip-based electrophoresis device. By utilizing the derivatization biochemistry method to have a surface modification on the sample loading channel, it prevents the sample from being adhered to the wall of the sample loading channel, and hence increases the sample loading rate, reduces cross-contamination of samples and performs specific bio-reaction by using the immobilization of matter including antigen, antibody, protein, or enzyme. This invention makes use of the continuous split flow and electric voltage control to work with the detecting unit, signal collecting unit, and signal processing unit so that the sample undergoes a timely, fast, continuous analysis without having interference from the sample of other time.
    • 本发明涉及一种具有基于芯片的电泳装置的样品分析系统,特别地,芯片电泳连接到基于动态流量的自动采样装置,以将样品引入基于芯片的电泳装置。 通过利用衍生生物化学方法在样品加载通道上进行表面改性,可以防止样品粘附到样品加载通道的壁上,从而增加样品加载速率,减少样品的交叉污染,并执行特定的 通过使用固定化物质(包括抗原,抗体,蛋白质或酶)进行生物反应。 本发明利用连续分流和电压控制与检测单元,信号采集单元和信号处理单元一起工作,使得样品经过及时,快速,连续的分析,而不会受到其他时间样品的干扰。
    • 4. 发明授权
    • Micromixer biochip
    • Micromixer生物芯片
    • US08277110B2
    • 2012-10-02
    • US12588194
    • 2009-10-07
    • Gwo-Bin LeeSung-Yi Yang
    • Gwo-Bin LeeSung-Yi Yang
    • B01F5/02
    • B01F5/0068B01F11/0071B01F13/0059
    • The present invention provides a micromixer biochip, comprising: a substrate having a surface; a fluidic channel layer disposed above the surface of the substrate, including a mixing chamber and a single-opening fluidic channel, wherein one end of the single-opening fluidic channel is closed and the other end of the single-opening fluidic channel connects to the mixing chamber, and a top portion of the single-opening fluidic channel is made of a flexible material; and an air chamber layer disposed above the top portion of the fluidic channel layer, including an air pore, at least one chamber, and an air channel connecting the chamber and the air pore, wherein the number and position of the air chamber correspond to the number and position of the single-opening fluidic channel of the fluidic channel layer.
    • 本发明提供一种微混合器生物芯片,包括:具有表面的基底; 设置在所述基板的表面上方的流体通道层,包括混合室和单开口流体通道,所述单开口流体通道的一端封闭,并且所述单开口流体通道的另一端连接到 混合室,单开口流体通道的顶部由柔性材料制成; 以及设置在流体通道层的顶部上方的空气室层,包括空气孔,至少一个室和连接室和空气孔的空气通道,其中空气室的数量和位置对应于 流体通道层的单开口流体通道的数量和位置。
    • 5. 发明申请
    • Micromixer biochip
    • Micromixer生物芯片
    • US20100246315A1
    • 2010-09-30
    • US12588194
    • 2009-10-07
    • Gwo-Bin LeeSung-Yi Yang
    • Gwo-Bin LeeSung-Yi Yang
    • B01F5/06B01F13/02
    • B01F5/0068B01F11/0071B01F13/0059
    • The present invention provides a micromixer biochip, comprising: a substrate having a surface; a fluidic channel layer disposed above the surface of the substrate, including a mixing chamber and a single-opening fluidic channel, wherein one end of the single-opening fluidic channel is closed and the other end of the single-opening fluidic channel connects to the mixing chamber, and a top portion of the single-opening fluidic channel is made of a flexible material; and an air chamber layer disposed above the top portion of the fluidic channel layer, including an air pore, at least one chamber, and an air channel connecting the chamber and the air pore, wherein the number and position of the air chamber correspond to the number and position of the single-opening fluidic channel of the fluidic channel layer
    • 本发明提供一种微混合器生物芯片,包括:具有表面的基底; 设置在所述基板的表面上方的流体通道层,包括混合室和单开口流体通道,所述单开口流体通道的一端封闭,并且所述单开口流体通道的另一端连接到 混合室,单开口流体通道的顶部由柔性材料制成; 以及设置在流体通道层的顶部上方的空气室层,包括空气孔,至少一个室和连接室和空气孔的空气通道,其中空气室的数量和位置对应于 流体通道层的单开口流体通道的数量和位置