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    • 1. 发明授权
    • Method for determining hematocrit corrected analyte concentrations
    • 确定血细胞比容校正分析物浓度的方法
    • US08388821B2
    • 2013-03-05
    • US12305363
    • 2007-10-05
    • Stephen Patrick BlytheMarco F. CardosiAndrew GillLeanne MillsChristopher Philip Leach
    • Stephen Patrick BlytheMarco F. CardosiAndrew GillLeanne MillsChristopher Philip Leach
    • G01N27/327
    • C12Q1/006G01N27/3271
    • Description is provided herein for an embodiment of a method determining a hematocrit-corrected glucose concentration. The exemplary method includes providing a test strip having a reference electrode and a working electrode, wherein the working electrode includes a plurality of microelectrodes and is coated with at least an enzyme and a mediator. The method can be achieved by: providing a test strip comprising a reference electrode and a working electrode formed with a plurality of microelectrodes and coated with a reagent layer; applying a fluid sample to the test strip for a reaction period; applying a test voltage between the reference electrode and the working electrode; measuring a test current as a function of time; measuring a steady state current value when the test current has reached an equilibrium; calculating a ratio of the test current to the steady state current value; plotting the ratio of the test current to the steady state current value as a function of the inverse square root of time; calculating an effective diffusion coefficient from the slope of the linearly regressed plot of the ratio of the test current to the steady state current value as a function of the inverse square root of time; and calculating a hematocrit-corrected concentration of analyte.
    • 本文提供了确定血细胞比容校正葡萄糖浓度的方法的实施方案的描述。 该示例性方法包括提供具有参考电极和工作电极的测试条,其中工作电极包括多个微电极并且至少涂覆有酶和介体。 该方法可以通过以下方式实现:提供包括参考电极和形成有多个微电极并涂覆有试剂层的工作电极的测试条; 将流体样品施加到测试条上一段反应期; 在参考电极和工作电极之间施加测试电压; 测量作为时间的函数的测试电流; 当测试电流达到平衡时测量稳态电流值; 计算测试电流与稳态电流值的比值; 将测试电流与稳态电流值的比率绘制为时间的逆平方根的函数; 根据测试电流与稳态电流值的比值的线性回归曲线的斜率计算有效扩散系数作为时间的平方根的函数; 并计算分析物的血细胞比容校正浓度。
    • 2. 发明申请
    • METHOD FOR DETERMINING HEMATOCRIT CORRECTED ANALYTE CONCENTRATIONS
    • 用于确定HEMATOCRIT校正分析物浓度的方法
    • US20100219084A1
    • 2010-09-02
    • US12305363
    • 2007-10-05
    • Stephen Patrick BlytheMarco F. CardosiAndrew GillLeanne MillsChristopher Philip Leach
    • Stephen Patrick BlytheMarco F. CardosiAndrew GillLeanne MillsChristopher Philip Leach
    • G01N27/26C12Q1/00
    • C12Q1/006G01N27/3271
    • Description is provided herein for an embodiment of a method determining a hematocrit-corrected glucose concentration. The exemplary method includes providing a test strip having a reference electrode and a working electrode, wherein the working electrode includes a plurality of microelectrodes and is coated with at least an enzyme and a mediator. The method can be achieved by: providing a test strip comprising a reference electrode and a working electrode formed with a plurality of microelectrodes and coated with a reagent layer; applying a fluid sample to the test strip for a reaction period; applying a test voltage between the reference electrode and the working electrode; measuring a test current as a function of time; measuring a steady state current value when the test current has reached an equilibrium; calculating a ratio of the test current to the steady state current value; plotting the ratio of the test current to the steady state current value as a function of the inverse square root of time; calculating an effective diffusion coefficient from the slope of the linearly regressed plot of the ratio of the test current to the steady state current value as a function of the inverse square root of time; and calculating a hematocrit-corrected concentration of analyte.
    • 本文提供了确定血细胞比容校正葡萄糖浓度的方法的实施方案的描述。 该示例性方法包括提供具有参考电极和工作电极的测试条,其中工作电极包括多个微电极并且至少涂覆有酶和介体。 该方法可以通过以下方式实现:提供包括参考电极和形成有多个微电极并涂覆有试剂层的工作电极的测试条; 将流体样品施加到测试条上一段反应期; 在参考电极和工作电极之间施加测试电压; 测量作为时间的函数的测试电流; 当测试电流达到平衡时测量稳态电流值; 计算测试电流与稳态电流值的比值; 将测试电流与稳态电流值的比率绘制为时间的逆平方根的函数; 根据测试电流与稳态电流值的比值的线性回归曲线的斜率计算有效扩散系数作为时间的平方根的函数; 并计算分析物的血细胞比容校正浓度。
    • 10. 发明授权
    • Dual chamber, multi-analyte test strip with opposing electrodes
    • 具有相对电极的双室多分析物测试条
    • US08323467B2
    • 2012-12-04
    • US12606467
    • 2009-10-27
    • Gavin MacFieGraeme WebsterMarco F. CardosiChristopher Philip LeachSteven SetfordSelwayan Saini
    • Gavin MacFieGraeme WebsterMarco F. CardosiChristopher Philip LeachSteven SetfordSelwayan Saini
    • G01N27/327
    • G01N27/3272G01N2035/00118
    • A dual chamber, multi-analyte test strip has a first insulating layer, a first electrically conductive layer, with a first working electrode, disposed on the first insulating layer and a first patterned spacer layer positioned above the first electrically conductive layer. The first patterned spacer layer has a first sample-receiving chamber, with first and second end openings, defined therein that overlies the first working electrode. The test strip also includes a first counter/reference electrode layer that is exposed to the first sample receiving chamber and is in an opposing relationship to the first working electrode. The test strip further includes a counter/reference insulating layer disposed over the first counter/reference electrode layer and a second counter/reference electrode layer disposed on the counter/reference substrate. Also included in the test strip is a second patterned spacer layer that is positioned above the second counter/reference electrode layer. The second patterned spacer layer has a second sample-receiving chamber, with first and second end openings, defined therein. The test strip additionally has a second electrically conductive layer, with a second working electrode, disposed above the second patterned spacer layer, a second insulating layer disposed above the second electrically conductive layer, a first analyte reagent layer disposed on the first working electrode within the first sample-receiving chamber; and a second analyte reagent layer disposed on the second working electrode within the second sample-receiving chamber. The second counter/reference electrode layer is exposed to the second sample receiving chamber and is in an opposing relationship to the second working electrode.
    • 双室多分析物测试条具有设置在第一绝缘层上的第一绝缘层,第一导电层和第一工作电极,以及位于第一导电层上方的第一图案化间隔层。 第一图案化间隔层具有第一样品接收室,其中限定在其中的第一和第二端部开口覆盖在第一工作电极上。 测试条还包括暴露于第一样品接收室并与第一工作电极相对关系的第一计数器/参考电极层。 测试条还包括设置在第一计数器/参考电极层上的计数器/参考绝缘层和设置在反向/参考基板上的第二计数器/参考电极层。 还包括在测试条中的是位于第二计数器/参考电极层上方的第二图案化间隔层。 第二图案化间隔层具有第二样品接收室,其中限定有第一和第二端部开口。 测试条另外具有第二导电层,第二工作电极设置在第二图案化间隔层上方,设置在第二导电层上方的第二绝缘层,设置在第二工作电极内的第一分析物试剂层, 第一采样室; 以及设置在第二样品接收室内的第二工作电极上的第二分析物试剂层。 第二计数器/参考电极层暴露于第二样品接收室,并且与第二工作电极相对。