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    • 15. 发明申请
    • METHOD OF DETECTING ANALYTE
    • 检测分析仪的方法
    • US20100045993A1
    • 2010-02-25
    • US12195997
    • 2008-08-21
    • Joerg MartiniRichard H. BruceFrancisco E. TorresPeter KieselMichael I. RechtJeffrey N. Roe
    • Joerg MartiniRichard H. BruceFrancisco E. TorresPeter KieselMichael I. RechtJeffrey N. Roe
    • G01N21/00
    • A61B5/1459A61B5/0031A61B5/14532G01N21/33G01N21/359
    • A system and method is provided for detecting concentration of an analyte in a fluid. The method comprises detecting an optical property of a first region of two or more regions in a system, the first region located in a container having a reservoir for one or more modifiers of one or more optical properties of the first region. The movement of the one or more modifiers is responsive to changes in concentration of the analyte. A next step detects an optical property of a second region of the two or more regions in the system, the second region located in a container having a reservoir for one or more modifiers of one or more optical properties of the second region. The movement of the one or more modifiers is responsive to changes in concentration of a compound, where the compound is something other than the analyte. The detected optical property of the first region and the detected optical property of the second region are used in embodiments to separate the effect of the analyte on the detected optical property of the first region from the effect of the compound, where the compound is an interfering compound.
    • 提供了用于检测流体中分析物的浓度的系统和方法。 该方法包括检测系统中两个或更多个区域的第一区域的光学性质,位于容器中的第一区域具有用于一个或多个第一区域的一个或多个光学特性的改性剂的储存器。 一种或多种改性剂的运动响应于分析物浓度的变化。 下一步骤检测系统中两个或更多个区域的第二区域的光学性质,位于容器中的第二区域具有用于一个或多个第二区域的一个或多个光学特性的改性剂的储存器。 一种或多种改性剂的运动响应化合物浓度的变化,其中化合物是除分析物以外的物质。 检测到的第一区域的光学特性和第二区域的检测光学特性用于实施例中以将分析物对第一区域的检测光学性质的影响与化合物的影响分开,其中化合物是干扰 复合。
    • 18. 发明授权
    • Method for determining blood glucose levels from a single surface of the skin
    • 从皮肤的单个表面测定血糖水平的方法
    • US06445938B1
    • 2002-09-03
    • US09668222
    • 2000-09-22
    • Herbert L. BermanJeffrey N. Roe
    • Herbert L. BermanJeffrey N. Roe
    • A61B500
    • A61B5/1455A61B5/14532A61B2562/245G01N21/552
    • This involves a non-invasive glucose measurement device and a process for determining blood glucose level in the human body using the device. In typical operation, the glucose measurement device is self-normalizing in that it does not employ an independent reference sample in its operation. The device uses attenuated total reflection (ATR) infrared spectroscopy. Preferably, the device is used on a fingertip and compares two specific regions of a measured infrared spectrum to determine the blood glucose level of the user. Clearly, this device is especially suitable for monitoring glucose levels in the human body, and is especially beneficial to users having diabetes mellitus. The device and procedure may be used for other analyte materials which exhibit unique mid-IR signatures of the type described herein and that are found in appropriate regions of the outer skin.
    • 这涉及非侵入性葡萄糖测量装置和使用该装置来测定人体血糖水平的方法。 在典型的操作中,葡萄糖测量装置是自标准化的,因为其操作中不使用独立的参考样品。 该装置使用衰减全反射(ATR)红外光谱。 优选地,将该装置用于指尖,并比较测量的红外光谱的两个特定区域以确定用户的血糖水平。 显然,该装置特别适用于监测人体内的葡萄糖水平,对于患有糖尿病的使用者尤其有益。 该装置和程序可用于展示本文所述类型的独特的中红外特征并且存在于外皮的合适区域中的其它分析物质。