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    • 1. 发明申请
    • INSTRUMENTED PIPETTE TIP
    • 仪器仪表提示
    • WO2009045343A1
    • 2009-04-09
    • PCT/US2008/011205
    • 2008-09-26
    • EL SPECTRA, LLCAYLIFFE, Harold, E.KING, Curtis, S.
    • AYLIFFE, Harold, E.KING, Curtis, S.
    • B01L3/02
    • B01L3/0275B01L3/0217B01L3/5027B01L2300/0627B01L2300/0645G01N35/1016G01N2035/1062
    • An improved pipette tip (100) including an elongate body stretching between a proximal end (116) and a distal end (114). The body (112) is typically made from a plurality of layers (e.g. 130, 132, 134, 136, 138) configured and arranged to provide a fluid path extending from the distal end toward the proximal end. The improved pipette tip (100) includes a sensor component disposed to electrically interrogate fluid flowing along the fluid path. An operable sensor component includes an electrode (e.g. 154, 192) that is disposed in the fluid path to contact fluid therein. A pipette tip (100) may be embodied to: count particles, verify sample integrity (e.g. freedom from bubbles), monitor sample flow rate, and confirm an inspired volume, among other uses.
    • 一种改进的移液器吸头(100),包括在近端(116)和远端(114)之间延伸的细长体。 主体(112)通常由多个层(例如,130,132,134,136,138)制成,其被构造和布置成提供从远端朝向近端延伸的流体路径。 改进的移液管尖端(100)包括设置成电询问沿着流体路径流动的流体的传感器部件。 可操作的传感器部件包括布置在流体路径中以接触其中的流体的电极(例如154,192)。 移液管尖端(100)可以被实现为:除了其他用途之外,还可以计数颗粒,验证样品完整性(例如,不受气泡的影响),监测样品流速,以及确认启发体积。
    • 2. 发明申请
    • METHOD FOR MANUFACTIRING A MICROFLUIDIC SENSOR
    • 微流感传感器的制造方法
    • WO2009126257A1
    • 2009-10-15
    • PCT/US2009/002172
    • 2009-04-07
    • E.I. SPECTRA, LLCAYLIFFE, Harold, E.KING, Curtis, S.
    • AYLIFFE, Harold, E.KING, Curtis, S.
    • G01N11/00
    • B01L3/502707B01L2200/0647B01L2200/10B01L2300/0645B01L2300/0681B01L2300/0874B01L2300/0887B01L2300/123
    • A method to manufacture microfluidic sensors, typically including componentizing substrate layers One such method includes providing a plurality of layers of material configured to permit their stacking to form at least a first cap layer, a first channel layer, an interrogation layer, and a second channel layer During assembly, ribbon sections of substrate layers are sandwiched to cooperatively align elements through-the-thickness of the sandwich Individual sensors are then removed from the sandwich ribbon A componentizing step includes forming one or more elements for successive sensors spaced along the axial length of a ribbon Certain elements include electrically conductive patterned structures preferably printed onto a substrate using conductive ink and a printing process, sometimes placing material in operable position to conduct electricity through the thickness of at least one nbbon Other elements may include channels, tunnels, and vias that can be machined, stamped, or cut into a ribbon section.
    • 一种制造微流体传感器的方法,通常包括组分化衬底层一种这样的方法包括提供多层材料,其被配置为允许其堆叠形成至少第一覆盖层,第一沟道层,询问层和第二沟道 层在组装期间,衬底层的带状部分被夹持以通过夹层的厚度协同对准元件。然后将单独的传感器从夹带中移出。组件化步骤包括形成一个或多个元件,用于沿着轴向长度 丝带某些元件包括导电图案结构,优选地使用导电油墨和印刷方法印刷在基底上,有时将材料放置在可操作位置以将电穿过至少一个nbbon的厚度。其它元件可以包括通道,隧道和通孔, 可加工,冲压或切割 丝带部分。