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    • 3. 发明申请
    • ANALYTE INJECTION SYSTEM
    • 分析系统
    • WO2005068993A1
    • 2005-07-28
    • PCT/US2004/018551
    • 2004-06-12
    • CALIPER LIFE SCIENCES, INC.WAKO PURE CHEMICAL INDUSTRIES, LTD.
    • PARK, CharlesKECHAGIA, PersefoniSPAID, MichaelJENSEN, MortenKAZAKOVA, Irina, G.MOLHO, JoshKAWABATA, TomohisaWATANABE, Mitsuo
    • G01N27/447
    • G01N27/44791B01L3/502715B01L3/502746B01L3/502753B01L3/502761B01L2200/0673B01L2400/0415C12Q1/6804C12Q1/6883G01N27/44773C12Q2565/629C12Q2565/125C12Q2563/179
    • This invention provides methods and devices for spatially separating at least first and second components in a sample which in one exemplary embodiment comprises introducing the first and second components into a first microfluidic channel of a microfluidic device in a carrier fluid comprising a spacer electrolyte solution and stacking the first and second components by isotachophoresis between a leading electrolyte solution and a trailing electrolyte solution, wherein the spacer electrolyte solution comprises ions which have an intermediate mobility in an electric field between the mobility of the ions present in the leading and trailing electrolyte solutions and wherein the spacer electrolyte solution comprises at least one of the following spacer ions MOPS, MES, Nonanoic acid, D-Glucuronic acid, Acetylsalicyclic acid, 4-Ethoxybenzoic acid, Glutaric acid, 3-Phenylpropionic acid, Phenoxyacetic acid, Cysteine, hippuric acid, p-hydroxyphenylacetic acid, isopropylmalonic acid, itaconic acid, citraconic acid, 3,5-dimethylbenzoic acid, 2,3-dimethylbenzoic acid, p-hydroxycinnamic acid, and 5-br-2,4-dihydroxybenzoic acid, and wherein the first component comprises a DNA-antibody conjugate and the second component comprises a complex of the DNA-antibody conjugate and an analyte.
    • 本发明提供了用于空间分离样品中的至少第一和第二组分的方法和装置,其在一个示例性实施方案中包括将第一和第二组分引入载体流体中的微流体装置的第一微流体通道,所述载体流体包括间隔电解质溶液和层叠 所述第一和第二组分通过在前导电解质溶液和尾部电解质溶液之间的等速电泳,其中所述间隔电解质溶液包含在电场中具有中间迁移率的离子,所述离子存在于所述前导和后续电解质溶​​液中的离子的迁移率之间, 间隔电解质溶液包含以下间隔离子MOPS,MES,壬酸,D-葡糖醛酸,乙酰水杨酸,4-乙氧基苯甲酸,戊二酸,3-苯基丙酸,苯氧基乙酸,半胱氨酸,马尿酸,p 羟基苯乙酸,异丙基丙二酸,衣康酸a cid,柠康酸,3,5-二甲基苯甲酸,2,3-二甲基苯甲酸,对羟基肉桂酸和5-溴-2,4-二羟基苯甲酸,其中第一组分包含DNA-抗体缀合物,第二组分包含第二 组分包含DNA抗体缀合物和分析物的复合物。
    • 9. 发明申请
    • CONTACT RESISTANCE MEASUREMENT FOR RESISTANCE LINEARITY IN NANOSTRUCTURE THIN FILMS
    • 接触电阻测量在纳米薄膜中的电阻线性
    • WO2011025782A1
    • 2011-03-03
    • PCT/US2010/046493
    • 2010-08-24
    • CAMBRIOS TECHNOLOGIES CORPORATIONSPAID, MichaelPSCHENITZKA, Florian
    • SPAID, MichaelPSCHENITZKA, Florian
    • G06F3/045
    • G06F3/045
    • The present disclosure is directed to a transparent conductor for use in touch panel devices having a plurality of nanostructures therein that provides reliable output based on user touch or pen input. To determine if a touch panel is reliable, there is disclosed a method of measuring voltages across the transparent conductor when it is touched. These measured voltages are converted into contact resistances, which are statistically analyzed. A median contact resistance is determined based on the converted contact resistances. The remaining set of converted contact resistances are analyzed to determine if they are within acceptable limits. Acceptable limits may include most of the contact resistances falling within a range, none of the contact resistances exceeding an upper limit, and a difference in contact resistances converted for different users or pens does not exceed a maximum variability.
    • 本公开涉及一种用于其中具有多个纳米结构的触摸面板装置的透明导体,其基于用户触摸或笔输入提供可靠的输出。 为了确定触摸面板是否可靠,公开了一种当触摸时测量透明导体上的电压的方法。 这些测量的电压被转换为接触电阻,进行统计分析。 基于转换的接触电阻确定中值接触电阻。 分析剩余的一组转换的接触电阻以确定它们是否在可接受的限度内。 可接受的限制可以包括大部分接触电阻落在一个范围内,接触电阻不超过上限,并且不同用户或笔转换的接触电阻差不超过最大变化。