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    • 2. 发明申请
    • LAB-ON-A-CHIP AND METHOD OF DRIVING THE SAME
    • LAB-ON-A-CHIP及其驱动方法
    • US20110151475A1
    • 2011-06-23
    • US12893898
    • 2010-09-29
    • Hye Yoon KIM
    • Hye Yoon KIM
    • G01N33/53C12M1/34
    • G01N33/54366B01L3/50273B01L2300/0816B01L2400/0406B01L2400/0481B01L2400/082
    • Provided are a lab-on-a-chip and a method of driving the same. The lab-on-a-chip includes a first region where a lower substrate and an upper substrate are bonded to each other, a second region where the lower and upper substrates are not bonded to each other, a gap control member disposed at a terminal of the second region facing an interface between the first and second regions, and configured to control a gap between the lower and upper substrates at the terminal of the second region, and a pressure application member disposed at the terminal of the second region facing the interface between the first and second regions, and configured to apply pressure to the upper substrate at the terminal of the second region to reduce a gap between the lower and upper substrates in the center of the second region. Thus, binding events between a fluid sample to be analyzed and a reagent can be maximized so that a high signal can be obtained using only an infinitesimal quantity of sample.
    • 提供了一种芯片实验室及其驱动方法。 芯片实验室包括下基板和上基板彼此接合的第一区域,下基板和上基板彼此不接合的第二区域,设置在端子处的间隙控制构件 所述第二区域面向所述第一和第二区域之间的界面,并且被配置为控制在所述第二区域的端子处的所述下基板和所述上基板之间的间隙,以及设置在所述第二区域的面向所述界面的端子处的压力施加构件 并且构造成在第二区域的端子处向上基板施加压力,以减小第二区域中心的下基板和上基板之间的间隙。 因此,待分析的流体样品与试剂之间的结合事件可以最大化,使得仅使用无穷小量的样品可以获得高信号。
    • 4. 发明授权
    • Lab-on-a-chip and method of driving the same
    • 芯片实验室及其驱动方法
    • US08628951B2
    • 2014-01-14
    • US12893898
    • 2010-09-29
    • Hye Yoon Kim
    • Hye Yoon Kim
    • C12M1/34
    • G01N33/54366B01L3/50273B01L2300/0816B01L2400/0406B01L2400/0481B01L2400/082
    • Provided are a lab-on-a-chip and a method of driving the same. The lab-on-a-chip includes a first region where a lower substrate and an upper substrate are bonded to each other, a second region where the lower and upper substrates are not bonded to each other, a gap control member disposed at a terminal of the second region facing an interface between the first and second regions, and configured to control a gap between the lower and upper substrates at the terminal of the second region, and a pressure application member disposed at the terminal of the second region facing the interface between the first and second regions, and configured to apply pressure to the upper substrate at the terminal of the second region to reduce a gap between the lower and upper substrates in the center of the second region. Thus, binding events between a fluid sample to be analyzed and a reagent can be maximized so that a high signal can be obtained using only an infinitesimal quantity of sample.
    • 提供了一种芯片实验室及其驱动方法。 芯片实验室包括下基板和上基板彼此接合的第一区域,下基板和上基板彼此不接合的第二区域,设置在端子处的间隙控制构件 所述第二区域面向所述第一和第二区域之间的界面,并且被配置为控制在所述第二区域的端子处的所述下基板和所述上基板之间的间隙,以及设置在所述第二区域的面向所述界面的端子处的压力施加构件 并且构造成在第二区域的端子处向上基板施加压力,以减小第二区域中心的下基板和上基板之间的间隙。 因此,待分析的流体样品与试剂之间的结合事件可以最大化,使得仅使用无穷小量的样品可以获得高信号。