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    • 7. 发明授权
    • Fiber optic probe placement guide
    • 光纤探头放置指南
    • US06415167B1
    • 2002-07-02
    • US09563782
    • 2000-05-02
    • Thomas B. BlankGeorge AcostaMutua MattuStephen L. Monfre
    • Thomas B. BlankGeorge AcostaMutua MattuStephen L. Monfre
    • A61B500
    • A61B5/0059A61B5/061A61B5/14532A61B5/1455A61B5/6824A61B2562/12A61B2562/146
    • A fiber optic probe placement guide minimizes sampling errors during optical sampling of a tissue measurement site by allowing repeatable placement of the fiber optic probe at a targeted tissue measurement site. A mount, contoured to conform to the shape of the tissue measurement site, typically the arm of a human subject, contains an aperture for receiving a fiber optic probe. A temperature probe on the contact surface of the guide allows for monitoring of surface temperature within the vicinity of the tissue measurement site. Crosshair slots in the mount align with corresponding crosshairs at the tissue measurement site. The fiber optic probe placement guide is affixed to the tissue measurement site by means of adhesive tape or fastenable straps. Guideposts on the external surface of the mount are received by corresponding receptacles on a subject interface bearing the fiber optic probe to facilitate alignment of the fiber optic probe with the aperture.
    • 光纤探针放置导向器通过允许将光纤探针重复放置在目标组织测量部位来最小化组织测量部位的光学采样期间的采样误差。 通常是组织测量部位的形状,通常是人体受试者的臂的形状的安装件包含用于接收光纤探针的孔。 引导件的接触表面上的温度探头允许监测组织测量部位附近的表面温度。 安装座上的十字准线槽与组织测量部位的相应十字准线对齐。 光纤探针放置导板通过胶带或可固定带固定在组织测量部位。 安装座外表面上的导轨由承载光纤探头的主体接口上的​​相应插座接收,以便光纤探头与孔径对准。
    • 8. 发明授权
    • Apparatus using reference measurement for calibration
    • 使用参考测量仪进行校准
    • US07183102B2
    • 2007-02-27
    • US11122669
    • 2005-05-04
    • Stephen L. MonfreKevin H. HazenTimothy L. RuchtiThomas B. BlankJames R. Henderson
    • Stephen L. MonfreKevin H. HazenTimothy L. RuchtiThomas B. BlankJames R. Henderson
    • C12M1/34
    • A61B5/1455A61B5/14532A61B5/1495G01N21/274G01N21/359G01N21/49
    • A method and apparatus for calibrating noninvasive or implantable glucose analyzers that uses either alternative invasive glucose determinations or noninvasive glucose determinations to calibrate noninvasive or implantable glucose analyzers. Use of an alternative invasive or noninvasive glucose determination in the calibration allows minimization of errors due to sampling methodology, and spatial and temporal variations that are built into the calibration model. An additional embodiment uses statistical correlations between noninvasive and alternative invasive glucose determinations and traditional invasive glucose determinations to adjust noninvasive or alternative invasive glucose concentrations to traditional invasive glucose concentrations. The invention provides a means for calibrating on the basis of glucose determinations that reflect the matrix observed and the variable measured by the analyzer more closely. A glucose analyzer couples an invasive fingerstick meter to a noninvasive glucose analyzer for calibration, validation, adaptation, and safety check of the calibration model embodied in the noninvasive analyzer.
    • 一种用于校准无创或可植入的葡萄糖分析仪的方法和装置,其使用替代的侵入性葡萄糖测定或非侵入性葡萄糖测定来校准无创或可植入的葡萄糖分析仪。 在校准中使用替代入侵或非侵入性葡萄糖测定可以最大限度地减少由采样方法引起的误差,以及内置于校准模型中的空间和时间变化。 另外的实施方案使用非侵入性和替代性侵入性葡萄糖测定与传统的侵入性葡萄糖测定之间的统计学相关性来调整对于传统侵入性葡萄糖浓度的非侵入性或替代性侵入性葡萄糖浓度。 本发明提供了一种用于基于反映观察到的基质的葡萄糖测定和由分析仪更仔细测量的变量进行校准的方法。 葡萄糖分析仪将无创手指计与无创葡萄糖分析仪相结合,用于非侵入性分析仪中体现的校准模型的校准,验证,适应和安全性检查。
    • 9. 发明授权
    • Method and apparatus using alternative site glucose determinations to calibrate and maintain noninvasive and implantable analyzers
    • 使用替代部位葡萄糖测定来校准和维护无创和可植入分析仪的方法和设备
    • US06998247B2
    • 2006-02-14
    • US10377916
    • 2003-02-28
    • Stephen L. MonfreKevin H. HazenTimothy L. RuchtiThomas B. BlankJames R. Henderson
    • Stephen L. MonfreKevin H. HazenTimothy L. RuchtiThomas B. BlankJames R. Henderson
    • C12Q1/54
    • A61B5/1455A61B5/14532A61B5/1495G01N21/274G01N21/359G01N21/49
    • Methods for calibrating noninvasive or implantable glucose analyzers utilize either alternative invasive glucose determinations or noninvasive glucose determinations for calibrating noninvasive or implantable glucose analyzers. Use of an alternative invasive or noninvasive glucose determination in the calibration allows minimization of errors due to sampling methodology, and spatial and temporal variation that are built into the calibration model. An additional method uses statistical correlations between noninvasive and alternative invasive glucose determinations and traditional invasive glucose determinations to adjust noninvasive or alternative invasive glucose concentrations to traditional invasive glucose concentrations. The methods provide a means for calibrating on the basis of glucose determinations that reflect the matrix observed and the variable measured by the analyzer more closely. A glucose analyzer couples an invasive fingerstick meter to a noninvasive glucose analyzer for calibration, validation, adaptation, and safety check of the calibration model embodied in the noninvasive analyzer.
    • 用于校准无创或可植入葡萄糖分析仪的方法利用替代侵入性葡萄糖测定或非侵入性葡萄糖测定来校准无创或可植入的葡萄糖分析仪。 在校准中使用替代入侵或无创葡萄糖测定可以最小化由采样方法引起的误差,以及内置于校准模型中的空间和时间变化。 一种额外的方法使用非侵入性和替代性侵入性葡萄糖测定与传统侵入性葡萄糖测定之间的统计学相关性来调整传统侵入性葡萄糖浓度的无创或替代侵入性葡萄糖浓度。 这些方法提供了一种基于反映观察到的基质的葡萄糖测定和由分析仪更接近测量的变量进行校准的方法。 葡萄糖分析仪将无创手指计与无创葡萄糖分析仪相结合,用于非侵入性分析仪中体现的校准模型的校准,验证,适应和安全性检查。