Transient decay amperometry
    1.
    发明授权
    Transient decay amperometry 有权
    瞬态衰变电流分析法

    公开(公告)号:US08470604B2

    公开(公告)日:2013-06-25

    申请号:US13210738

    申请日:2011-08-16

    IPC分类号: G01N27/333 G01N33/66

    摘要: A biosensor system determines an analyte concentration of a biological sample using an electrochemical process without Cottrell decay. The biosensor system generates an output signal having a transient decay, where the output signal is not inversely proportional to the square root of the time. The transient decay is greater or less than the −0.5 decay constant of a Cottrell decay. The transient decay may result from a relatively short incubation period, relatively small sample reservoir volumes, relatively small distances between electrode surfaces and the lid of the sensor strip, and/or relatively short excitations in relation to the average initial thickness of the reagent layer. The biosensor system determines the analyte concentration from the output signal having a transient decay.

    摘要翻译: 生物传感器系统使用没有Cottrell衰变的电化学过程来确定生物样品的分析物浓度。 生物传感器系统产生具有瞬时衰减的输出信号,其中输出信号不与时间的平方根成反比。 瞬态衰减大于或小于Cottrell衰变的-0.5衰减常数。 瞬时衰减可能由相对较短的潜伏期,相对小的样品储存容量,电极表面与传感器条的盖之间的相对小的距离和/或相对于试剂层的平均初始厚度的相对短的激发而产生。 生物传感器系统从具有瞬时衰减的输出信号确定分析物浓度。

    Transient Decay Amperometry
    3.
    发明申请
    Transient Decay Amperometry 有权
    瞬态衰变电流法

    公开(公告)号:US20120031776A1

    公开(公告)日:2012-02-09

    申请号:US13210738

    申请日:2011-08-16

    IPC分类号: G01N27/333 G01N33/66

    摘要: A biosensor system determines an analyte concentration of a biological sample using an electrochemical process without Cottrell decay. The biosensor system generates an output signal having a transient decay, where the output signal is not inversely proportional to the square root of the time. The transient decay is greater or less than the −0.5 decay constant of a Cottrell decay. The transient decay may result from a relatively short incubation period, relatively small sample reservoir volumes, relatively small distances between electrode surfaces and the lid of the sensor strip, and/or relatively short excitations in relation to the average initial thickness of the reagent layer. The biosensor system determines the analyte concentration from the output signal having a transient decay.

    摘要翻译: 生物传感器系统使用没有Cottrell衰变的电化学过程来确定生物样品的分析物浓度。 生物传感器系统产生具有瞬时衰减的输出信号,其中输出信号不与时间的平方根成反比。 瞬态衰减大于或小于Cottrell衰变的-0.5衰减常数。 瞬时衰减可能由相对较短的潜伏期,相对小的样品储存容量,电极表面与传感器条的盖之间的相对小的距离和/或相对于试剂层的平均初始厚度的相对短的激发而产生。 生物传感器系统从具有瞬时衰减的输出信号确定分析物浓度。

    Transient Decay Amperometry Biosensors
    4.
    发明申请
    Transient Decay Amperometry Biosensors 有权
    瞬态衰变电流测定生物传感器

    公开(公告)号:US20130334066A1

    公开(公告)日:2013-12-19

    申请号:US13904208

    申请日:2013-05-29

    IPC分类号: G01N27/327

    摘要: A biosensor system determines an analyte concentration of a biological sample using an electrochemical process without Cottrell decay. The biosensor system generates an output signal having a transient decay, where the output signal is not inversely proportional to the square root of the time. The transient decay is greater or less than the −0.5 decay constant of a Cottrell decay. The transient decay may result from a relatively short incubation period, relatively small sample reservoir volumes, relatively small distances between electrode surfaces and the lid of the sensor strip, and/or relatively short excitations in relation to the average initial thickness of the reagent layer. The biosensor system determines the analyte concentration from the output signal having a transient decay.

    摘要翻译: 生物传感器系统使用没有Cottrell衰变的电化学过程来确定生物样品的分析物浓度。 生物传感器系统产生具有瞬时衰减的输出信号,其中输出信号不与时间的平方根成反比。 瞬态衰减大于或小于Cottrell衰变的-0.5衰减常数。 瞬时衰减可能由相对较短的潜伏期,相对小的样品储存容量,电极表面与传感器条的盖之间的相对小的距离和/或相对于试剂层的平均初始厚度的相对短的激发而产生。 生物传感器系统从具有瞬时衰减的输出信号确定分析物浓度。

    Transient Decay Amperometry
    5.
    发明申请
    Transient Decay Amperometry 有权
    瞬态衰变电流法

    公开(公告)号:US20090068754A1

    公开(公告)日:2009-03-12

    申请号:US11875942

    申请日:2007-10-21

    IPC分类号: G01N27/00

    摘要: A biosensor system determines an analyte concentration of a biological sample using an electrochemical process without Cottrell decay. The biosensor system generates an output signal having a transient decay, where the output signal is not inversely proportional to the square root of the time. The transient decay is greater or less than the −0.5 decay constant of a Cottrell decay. The transient decay may result from a relatively short incubation period, relatively small sample reservoir volumes, relatively small distances between electrode surfaces and the lid of the sensor strip, and/or relatively short excitations in relation to the average initial thickness of the reagent layer. The biosensor system determines the analyte concentration from the output signal having a transient decay.

    摘要翻译: 生物传感器系统使用没有Cottrell衰变的电化学过程来确定生物样品的分析物浓度。 生物传感器系统产生具有瞬时衰减的输出信号,其中输出信号不与时间的平方根成反比。 瞬态衰减大于或小于Cottrell衰变的-0.5衰减常数。 瞬时衰减可能由相对较短的潜伏期,相对小的样品储存容量,电极表面与传感器条的盖之间的相对小的距离和/或相对于试剂层的平均初始厚度的相对短的激发而产生。 生物传感器系统从具有瞬时衰减的输出信号确定分析物浓度。

    Transient decay amperometry
    6.
    发明授权
    Transient decay amperometry 有权
    瞬态衰变电流分析法

    公开(公告)号:US08026104B2

    公开(公告)日:2011-09-27

    申请号:US11875942

    申请日:2007-10-21

    IPC分类号: G01N27/00 G01N27/413

    摘要: A biosensor system determines an analyte concentration of a biological sample using an electrochemical process without Cottrell decay. The biosensor system generates an output signal having a transient decay, where the output signal is not inversely proportional to the square root of the time. The transient decay is greater or less than the −0.5 decay constant of a Cottrell decay. The transient decay may result from a relatively short incubation period, relatively small sample reservoir volumes, relatively small distances between electrode surfaces and the lid of the sensor strip, and/or relatively short excitations in relation to the average initial thickness of the reagent layer. The biosensor system determines the analyte concentration from the output signal having a transient decay.

    摘要翻译: 生物传感器系统使用没有Cottrell衰变的电化学过程来确定生物样品的分析物浓度。 生物传感器系统产生具有瞬时衰减的输出信号,其中输出信号不与时间的平方根成反比。 瞬态衰减大于或小于Cottrell衰变的-0.5衰减常数。 瞬时衰减可能由相对较短的潜伏期,相对小的样品储存容量,电极表面与传感器条的盖之间的相对小的距离和/或相对于试剂层的平均初始厚度的相对短的激发而产生。 生物传感器系统从具有瞬时衰减的输出信号确定分析物浓度。

    Auto-calibration label and methods of forming the same
    8.
    发明授权
    Auto-calibration label and methods of forming the same 有权
    自动校准标签及其形成方法

    公开(公告)号:US07919045B2

    公开(公告)日:2011-04-05

    申请号:US11918828

    申请日:2006-04-18

    IPC分类号: G01N21/00

    摘要: An auto-calibration circuit or label is adapted to be used with different instruments. The auto-calibration circuit comprises a first plurality of electrical connections and at least one electrical connection. The first plurality of electrical connections is utilized by the different instruments to auto-calibrate. The first plurality of electrical connections includes a first plurality of contact areas. At least one electrical connection is utilized solely by the second instrument to auto-calibrate and includes at least one contact area. This electrical connection is distinct from the first plurality of electrical connections. The first plurality of electrical connections is routed directly from each of the first plurality of contact areas to a respective first or second common connection. The at least one electrical connection is routed directly from the at least one contact area to the respective first common connection, the second common connection or a no-contact area.

    摘要翻译: 自动校准电路或标签适用于不同的仪器。 自动校准电路包括第一多个电连接和至少一个电连接。 第一组多个电气连接被不同的仪器用于自动校准。 第一多个电连接包括第一多个接触区域。 至少一个电连接仅由第二仪器用于自动校准并且包括至少一个接触区域。 该电连接不同于第一多个电连接。 第一组多个电连接件从第一多个接触区域中的每一个直接路由到相应的第一或第二公共连接。 至少一个电连接从至少一个接触区域直接路由到相应的第一公共连接,第二公共连接或无接触区域。

    Auto-calibration label and methods of forming the same
    10.
    发明申请
    Auto-calibration label and methods of forming the same 有权
    自动校准标签及其形成方法

    公开(公告)号:US20090081082A1

    公开(公告)日:2009-03-26

    申请号:US11918828

    申请日:2006-04-18

    IPC分类号: G01N27/00

    摘要: An auto-calibration circuit or label is adapted to be used with different instruments. The auto-calibration circuit comprises a first plurality of electrical connections and at least one electrical connection. The first plurality of electrical connections is utilized by the different instruments to auto-calibrate. The first plurality of electrical connections includes a first plurality of contact areas. At least one electrical connection is utilized solely by the second instrument to auto-calibrate and includes at least one contact area. This electrical connection is distinct from the first plurality of electrical connections. The first plurality of electrical connections is routed directly from each of the first plurality of contact areas to a respective first or second common connection. The at least one electrical connection is routed directly from the at least one contact area to the respective first common connection, the second common connection or a no-contact area.

    摘要翻译: 自动校准电路或标签适用于不同的仪器。 自动校准电路包括第一多个电连接和至少一个电连接。 第一组多个电气连接被不同的仪器用于自动校准。 第一多个电连接包括第一多个接触区域。 至少一个电连接仅由第二仪器用于自动校准并且包括至少一个接触区域。 该电连接不同于第一多个电连接。 第一组多个电连接从第一多个接触区域中的每一个直接路由到相应的第一或第二公共连接。 至少一个电连接从至少一个接触区域直接路由到相应的第一公共连接,第二公共连接或无接触区域。