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    • 14. 发明授权
    • Fabricating biopolymer arrays
    • 制造生物聚合物阵列
    • US06323043B1
    • 2001-11-27
    • US09302922
    • 1999-04-30
    • Michael P. CarenCarol T. SchembriPeter G. Webb
    • Michael P. CarenCarol T. SchembriPeter G. Webb
    • G01N33543
    • B01J19/0046B01J2219/00378B01J2219/00527B01J2219/00585B01J2219/0059B01J2219/00596B01J2219/00605B01J2219/00608B01J2219/0061B01J2219/00612B01J2219/00617B01J2219/00619B01J2219/00626B01J2219/00637B01J2219/00659B01J2219/00722B01J2219/00725C40B40/06C40B40/10C40B60/14Y10T436/2575
    • A method and apparatus for fabricating an array of biopolymers on a substrate using a biopolymer or biomonomer fluid, and using a dispensing head. The head has a reservoir chamber and at least one jet which can dispense droplets onto a substrate. The jet includes a capillary delivery chamber communicating with the reservoir chamber, which delivery chamber has an orifice. The jet further includes an ejector which, when activated, causes a droplet to be ejected from the orifice. The method includes loading the head by positioning the head with the orifice adjacent and facing a biomonomer or biopolymer fluid, and providing a load pressure to the reservoir chamber. The load pressure is sufficiently negative such that the fluid is drawn into the reservoir chamber through the orifice and delivery chamber, while simultaneously being insufficient to result in ambient atmosphere entering the delivery chamber through the orifice once the head has been loaded and no further fluid is facing and adjacent the orifice. The head is positioned with the orifice facing the substrate and multiple droplets are dispensed from the head orifice so as to form an array of droplets on the substrate.
    • 一种使用生物聚合物或生物共聚物流体以及使用分配头在衬底上制造生物聚合物阵列的方法和装置。 头部具有储存室和至少一个可将液滴分配到基底上的射流。 喷射器包括与储存室连通的毛细管输送室,该输送室具有孔口。 射流还包括喷射器,其在被激活时使得液滴从孔口喷出。 该方法包括通过将头部与孔相邻并且面向生物体或生物聚合物流体的位置来装载头部,并向贮存室提供负载压力。 负载压力足够负,使得流体通过孔口和输送室被吸入储存室,同时不足以在头部已经被加载并且没有另外的流体是通过孔口导致环境大气通过孔口进入输送室 面对并邻近孔口。 头部定位成孔口面向衬底,并且从头部孔口分配多个液滴,以便在衬底上形成液滴阵列。
    • 17. 发明申请
    • Competitive oligonucleotides
    • 竞争性寡核苷酸
    • US20070238104A1
    • 2007-10-11
    • US11400475
    • 2006-04-07
    • Michael Thomas BarrettMichael P. Caren
    • Michael Thomas BarrettMichael P. Caren
    • C12Q1/68G06F19/00
    • C12Q1/6816C12Q2525/186
    • The present invention generally relates to competitive oligonucleotides and, in some embodiments, to competitive oligonucleotides for use in comparative genomic hybridization (CGH) and related techniques. One aspect is generally directed to a blocking composition constructed and arranged to be used in an assay of a nucleic acid. The blocking composition may comprise oligonucleotides comprising sequences selected to hybridize to the nucleic acid used in the assay. Another aspect is generally directed to performing CGH assays and similar techniques on genomic DNA, in the absence of a Cot-1 fraction, such that the genomic DNA does not substantially cross-hybridize. Yet other aspects of the invention are directed to devices or kits for making or using competitive oligonucleotides, methods of promoting such competitive oligonucleotides, or the like.
    • 本发明一般涉及竞争性寡核苷酸,在一些实施方案中涉及用于比较基因组杂交(CGH)和相关技术的竞争性寡核苷酸。 一个方面通常涉及构建和排列用于核酸测定中的阻断组合物。 封闭组合物可以包含寡核苷酸,其包含选择用于与测定中使用的核酸杂交的序列。 另一方面通常涉及在不存在Cot-1级分的情况下对基因组DNA进行CGH测定和类似技术,使得基因组DNA基本上不交叉杂交。 本发明的其它方面涉及用于制备或使用竞争性寡核苷酸的装置或试剂盒,促进这种竞争性寡核苷酸的方法等。
    • 20. 发明授权
    • Inkjet cartridge design for facilitating the adhesive sealing of a
printhead to an ink reservoir
    • 喷墨墨盒设计,用于促进打印头与墨水容器的粘合密封
    • US5736998A
    • 1998-04-07
    • US398849
    • 1995-03-06
    • Michael P. CarenMax Stephen GuntherJohn C. Nadworny
    • Michael P. CarenMax Stephen GuntherJohn C. Nadworny
    • B41J2/14B41J2/16B41J2/135
    • B41J2/1631B41J2/14024B41J2/1603B41J2/1623B41J2/1625B41J2/1628B41J2/1634B41J2002/14362
    • This disclosure describes an improved ink seal between a print cartridge body and an inkjet printhead. In a preferred embodiment, a nozzle member containing an array of orifices has a substrate, having heater elements formed thereon, affixed to a back surface of the nozzle member. Each orifice in the nozzle member is associated with a single heating element formed on the substrate. The back surface of the nozzle member extends beyond the outer edges of the substrate. Ink is supplied from an ink reservoir to the orifices by a fluid channel within a barrier layer between the nozzle member and the substrate. The fluid channel in the barrier layer may receive ink fl owing around two or more outer edges of the substrate or may receive ink which flows through a hole in the center of the substrate. The nozzle member is adhesively sealed with respect to the ink reservoir body by forming an ink seal circumscribing the substrate, between the back surface of the nozzle member and the headland area of the print cartridge. This method and structure for a print cartridge headland for providing a seal directly between a nozzle member and an ink reservoir body has many advantages over other methods of providing a seal between a printhead and the ink reservoir body. One advantage is that such a structure reduces the occurrence of clogged nozzles during the adhesive sealing process. Another advantage is that there is a reduced occurrence of adhesive voids where the adhesive seal acts to encapsulate and protect the traces near the substrate which may come in contact with ink. A further advantage is that it is easier to control adhesive flow and bulges due to varying amounts and placement of adhesive. The above advantages provide reduced yield losses, and thus lower manufacturing costs, when manufacturing thermal inkjet print cartridges.
    • 本公开描述了在打印盒本体和喷墨打印头之间改进的墨水密封。 在优选实施例中,包含孔阵列的喷嘴构件具有固定到喷嘴构件的后表面上的在其上形成有加热元件的基板。 喷嘴构件中的每个孔与形成在基底上的单个加热元件相关联。 喷嘴构件的后表面延伸超过衬底的外边缘。 油墨通过喷嘴构件和基底之间的阻挡层内的流体通道从油墨储存器供应到孔口。 阻挡层中的流体通道可以在基底的两个或更多个外边缘处接收墨水,或者可以接收流经基板中心的孔的墨。 喷嘴构件通过在喷嘴构件的后表面和打印碳粉盒的岬角区域之间形成限定衬底的油墨密封而相对于储墨体粘合地密封。 用于在喷嘴构件和墨水储存器本体之间直接提供密封的打印墨盒头岬的这种方法和结构具有优于在打印头和墨水储存器本体之间提供密封的其它方法的优点。 一个优点是这种结构减少了在粘合剂密封过程中喷嘴堵塞的发生。 另一个优点是粘合剂空隙的发生减少,其中粘合剂密封件用于封装和保护靠近基底的迹线,该迹线可能与墨接触。 另一个优点是,由于粘合剂的量的变化和放置,控制粘合剂流动和膨胀更容易。 上述优点在制造热喷墨打印墨盒时提供降低的产量损失,并因此降低制造成本。