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    • 31. 发明申请
    • AUTOMATIC SAMPLE PROCESSING METHOD AND AUTOMATIC SAMPLE PROCESSING APPARATUS FOR LID-SEALED MICROCHIPS FOR BIOANALYSIS
    • 自动样品加工方法和自动样品加工设备用于生物分析的密封微生物
    • US20090205959A1
    • 2009-08-20
    • US11815837
    • 2006-02-08
    • Machiko FujitaHisao Kawaura
    • Machiko FujitaHisao Kawaura
    • G01N27/447B01D57/02
    • G01N27/44791G01N27/44717
    • The present invention provides a technique for automating the operation to peel off and remove a lid seal part adhered and fixed to the top face of a substrate part constituting a lid-sealed “microchip” after subjecting a sample solution to be analyzed to electrophoretic separation. After subjecting sample solution to be analyzed to desired electrophoretic separation the by utilizing a channel formed in the lid-sealed microchip, the electrophoretically separated liquid sample held in the channel undergoes freezing of the aqueous solvent contained and then, while the whole electrophoretically separated liquid sample remains sustained in the frozen state, an end of the lid seal part used for sealing the top face of channel formed in the substrate part is lifted up at a predetermined speed so as to peel and remove it from the substrate part under a condition of maintaining a bend of a predetermined radius of curvature.
    • 本发明提供一种在将样品溶液进行电泳分离后,使构成盖密封的“微芯片”的基板部件的顶面上粘贴固定的盖密封部件剥离除去操作的技术。 在将样品溶液进行分析以进行所需的电泳分离后,通过利用形成在盖密封微芯片中的通道,保持在通道中的电泳分离的液体样品经受所含水性溶剂的冷冻,然后在整个电泳分离的液体样品 保持在冻结状态,用于密封形成在基板部分中的通道的顶面的盖密封部分的端部以预定的速度被提升,以便在维护的条件下从基板部件剥离并将其从基板部件移除 预定曲率半径的弯曲。
    • 36. 发明申请
    • MICROCHIP AND ANALYSIS METHOD USING THE MICROCHIP
    • MICROCHIP和分析方法使用MICROCHIP
    • US20090045058A1
    • 2009-02-19
    • US12097479
    • 2006-12-12
    • Machiko FujitaHisao KawauraWataru Hattori
    • Machiko FujitaHisao KawauraWataru Hattori
    • G01N27/26B01J19/00
    • G01N27/44791B01L3/502707B01L3/502746B01L7/50B01L2200/027B01L2200/0678B01L2300/046B01L2300/047B01L2300/0645B01L2300/0681B01L2300/0816B01L2300/161B01L2400/0406B01L2400/0421B01L2400/086
    • With the object of realizing a microchip that allows drying and fixing of a substance that is the object of analysis in a shorter time while maintaining the separation capabilities of a separation operation, a microchip used to implement a separation operation of an analysis sample without contamination or spillage is composed of a substrate and a cover, the substrate being provided with a trench-shaped channel in its upper surface and substrate reservoirs that are linked with this channel, and the cover hermetically sealing the upper surface of the channel, attachable to or detachable from the substrate, and provided with through-holes formed at positions corresponding to the substrate reservoirs, cover reservoirs that are formed on the inner sides of the through-holes for holding liquid that is introduced when the cover is in the state of hermetically sealing the upper surface of the channel, and partitions that are formed on the bottom surfaces of the cover reservoirs. The areas of the openings of the partitions are smaller than the areas of the openings of the cover reservoirs that are over the partitions.
    • 本发明的目的是在保持分离操作的分离能力的同时,在较短的时间内实现对作为分析对象的物质进行干燥和定影的微芯片,用于实现分析样品的分离操作的微芯片而没有污染, 溢出物由衬底和覆盖物组成,衬底在其上表面设有沟槽形通道,与该通道连接的衬底储存器,盖子气密地密封通道的上表面,可附接到或可拆卸 并且设置有形成在与基板储存器相对应的位置处的通孔,形成在用于保持液体的通孔的内侧的盖储存器,所述通孔用于当盖处于气密密封状态时被引入 通道的上表面,以及形成在盖储存器的底表面上的隔板。 隔板的开口面积小于在隔板上方的盖子储存器的开口的面积。