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    • 3. 发明申请
    • MICROFLUIDIC MICROMIXER
    • 微流控MICROMIXER
    • WO2003037491A2
    • 2003-05-08
    • PCT/US2002/034244
    • 2002-10-25
    • SCIENCE AND TECHNOLOGY CORPORATION @ UNIVERSITY OF NEW MEXICOSKLAR, LarryBURANDA, TioneEDWARDS, BruceGALLEGOS, CarlosJACKSON, W., CoytKUCKUCK, FrederickLOPEZ, GabrielMAMMOLI, Andrea
    • SKLAR, LarryBURANDA, TioneEDWARDS, BruceGALLEGOS, CarlosJACKSON, W., CoytKUCKUCK, FrederickLOPEZ, GabrielMAMMOLI, Andrea
    • B01F
    • G01N35/085B01F13/0071B01L3/0293B01L3/5085G01N15/1404G01N15/1484G01N35/0099G01N35/08G01N35/1011G01N2015/1413G01N2015/149G01N2035/00514G01N2035/00544
    • A mixing apparatus is provided comprising: first driving means for driving a plurality of reagent samples from a plurality of respective source wells into a first fluid flow stream; second driving means for introducing a separation gas between each of the plurality of reagent sample in the first fluid flow stream; means for driving a second fluid flow stream comprising a plurality of particles; a junction device comprising: a first inlet port for receiving the first fluid flow stream; a second inlet port for receiving the second fluid flow stream; a reaction zone for forcing mixing between the first fluid flow stream and the second fluid flow stream to thereby form a reaction product stream; and an outlet port for allowing the reaction product stream to exit the junction device; a reaction zone where the plurality of reagent samples and the plurality of particles mix to form a plurality of reaction products, the reaction zone communicating with the outlet port; reaction product driving means for driving the reaction product stream through the reaction zone; and means for selectively analyzing the reaction product stream for the reaction products. A method for mixing materials is also provided comprising: driving a first fluid flow stream comprising a plurality of reagent samples separated by gas bubbles through a second inlet port of a junction device; driving a second fluid flow stream comprising particles through a first inlet port of the junction device; mixing the first fluid stream and the second fluid stream in a reaction zone in the junction device to form a reaction product stream; and driving the reaction product stream through an outlet port of the junction device.
    • 提供了一种混合设备,包括:第一驱动装置,用于将多个试剂样品从多个相应的源阱驱动到第一流体流中; 第二驱动装置,用于在所述第一流体流中的所述多个试剂样品中的每一个之间引入分离气体; 用于驱动包括多个颗粒的第二流体流动流的装置; 连接装置,包括:用于接收第一流体流动的第一入口; 用于接收第二流体流的第二入口; 用于迫使所述第一流体流和所述第二流体流之间的混合从而形成反应产物流的反应区; 以及用于允许反应产物流离开接合装置的出口; 反应区,其中所述多个试剂样品和所述多个颗粒混合以形成多个反应产物,所述反应区与所述出口连通; 用于驱动反应产物流通过反应区的反应产物驱动装置; 以及用于选择性分析反应产物的反应产物流的装置。 还提供了一种用于混合材料的方法,包括:驱动包含通过气泡隔开的多个试剂样品的第一流体流,通过连接装置的第二入口; 通过所述连接装置的第一入口驱动包含颗粒的第二流体流; 将所述第一流体流和所述第二流体流在所述连接装置中的反应区中混合以形成反应产物流; 并且通过连接装置的出口驱动反应产物流。
    • 8. 发明申请
    • STABLE ELASTOMERIC NEGATIVE ACOUSTIC CONTRAST PARTICLES AND THEIR USE IN ACOUSTIC RADIATION FIELDS
    • 稳定的弹性体负反射粒子及其在声辐射场中的应用
    • WO2010132474A2
    • 2010-11-18
    • PCT/US2010/034415
    • 2010-05-11
    • STC.UNMLOPEZ, GabrielKADUCHAK, Gregory
    • LOPEZ, GabrielKADUCHAK, Gregory
    • A61K9/14A61K9/16A61K47/30A61K49/00
    • C08L83/04A61K9/0009A61K9/1641A61K9/1682A61K47/34A61K49/225G01N33/538G01N33/54313
    • We describe methods for synthesis and formulations of stable elastomeric negative acoustic contrast particles with controllable compressibility and density. These elastomeric negative acoustic contrast particles have a density/compressibility ratio that is less than that of water and therefore exhibit negative acoustic contrast under acoustic radiation exposure. This negative acoustic contrast allows our elastomeric negative acoustic contrast particles to be acoustically manipulated (e.g. separated) differently from other components (e.g. cells) within an aqueous solution. This disclosure also describes methods for biofunctionalization of the elastomeric negative acoustic contrast particles and as an example their use as platforms for bioassays. Potential applications of these elastomeric negative acoustic contrast particles include sensitive bioassays based on acoustic flow cytometry and other types of techniques that utilize acoustic fields, including ultrasound imaging and ultrasound triggered drug delivery.
    • 我们描述了具有可压缩性和密度的稳定的弹性体负声学对比粒子的合成方法和配方。 这些弹性体负声学对比颗粒的密度/压缩比小于水的密度/压缩比,因此在声辐射暴露下呈现负的声学对比度。 这种负声学对比度允许我们的弹性体负声学对比粒子与水溶液中的其它组分(例如细胞)不同地被声学操纵(例如分离)。 本公开还描述了弹性体负声学对比粒子的生物功能化的方法,并且作为其用作生物测定平台的实例。 这些弹性体负声学对比粒子的潜在应用包括基于声流式细胞术的敏感生物测定和利用声场的其他类型的技术,包括超声成像和超声触发药物递送。