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    • 1. 发明授权
    • Luminescent oxygen sensor based on a lanthanide complex
    • 基于镧系元素络合物的发光氧传感器
    • US5190729A
    • 1993-03-02
    • US655648
    • 1991-02-14
    • Bennett L. HauensteinRaysna PicernoHarry G. BrittainJames R. Nestor
    • Bennett L. HauensteinRaysna PicernoHarry G. BrittainJames R. Nestor
    • A61B5/00C09K11/06G01N21/64
    • G01N21/643A61B5/1459C09K11/06G01N2021/641G01N2021/6432G01N2021/6434
    • An oxygen sensor is provided for determination of the partial pressure of oxygen. In one aspect, the invention consists of oxygen-quenchable luminescent lanthanide complexes for an oxygen sensor. The complexes are oxygen-quenchable even though immobilized in a solid matrix, such as a solid polymeric matrix, and preferably are terbium complexes of Schiff base or .beta.-diketone ligands. Certain preferred processes are described for improving the oxygen sensitivity of the lanthanide complexes. In another aspect, the invention consists of a combination measuring and reference analyte sensor containing both quenchable and nonquenchable luminescent materials. The materials luminesce at different wavelengths and thus may be transmitted together down a single optical fiber and later discriminated by means of filters and separtely detected. In a third aspect, the invention consists of a low-noise phosphorescent analyte sensor employing a gatable detector. By use of an analyte-quenchable material having a relatively long-lived phosphorescence, a pulsed excitation source, and selectively coupling the detector after the excitation source is off and any short-lived background luminescence has ended, a low-noise output signal consisting of the long-lived phosphorescence is selectively detected and the concentration of the analyte determined therefrom. In a preferred embodiment, all aspects of the invention are combined to produce a miniature in vivo oxygen sensor for use in the narrow blood vessels of the body.
    • 提供氧传感器用于测定氧的分压。 一方面,本发明由用于氧传感器的氧可淬灭的发光镧系元素络合物组成。 即使固定在固体基质如固体聚合物基质中,并且优选地是席夫碱或β-二酮配体的铽络合物,络合物是氧可淬火的。 描述了用于改善镧系元素络合物的氧敏感性的某些优选方法。 在另一方面,本发明由包含可淬火和不可淬灭的发光材料的组合测量和参考分析物传感器组成。 材料在不同波长处发光,因此可以沿着单根光纤一起传输,并且稍后通过滤光器区分并分离检测。 在第三方面,本发明由采用可点阵检测器的低噪声磷光分析物传感器组成。 通过使用具有相对长寿命的磷光的分析物 - 可淬火材料,脉冲激发源,并且在激发源关闭并且任何短暂的背景发光已经结束之后选择性地耦合检测器,由低通滤波器 选择性地检测长寿命的磷光,并由此确定分析物的浓度。 在优选实施例中,本发明的所有方面被组合以产生用于体内狭窄血管的微型体内氧传感器。
    • 2. 发明授权
    • Luminescent oxygen sensor based on a lanthanide complex
    • 基于镧系元素络合物的发光氧传感器
    • US4861727A
    • 1989-08-29
    • US904963
    • 1986-09-08
    • Bennett L. HauensteinRaysna PicernoHarry G. BrittainJames R. Nestor
    • Bennett L. HauensteinRaysna PicernoHarry G. BrittainJames R. Nestor
    • G01N33/49A61B5/00C09K11/06G01N21/64G01N21/76
    • G01N21/643A61B5/1459C09K11/06G01N2021/641G01N2021/6432G01N2021/6434G01N2021/6484G01N2021/772G01N2021/7786G01N21/7703Y10T436/20Y10T436/207497
    • An oxygen sensor is provided for determination of the partial pressure of oxygen. In one aspect, the invention consists of oxygen-quenchable luminescent lanthanide complexes for an oxygen sensor. The complexes are oxygen-quenchable even though immobilized in a solid matrix, such as a solid polymeric matrix, and preferably are terbium complexes of Schiff base or .beta.-diketone ligands. Certain preferred processes are described for improving the oxygen sensitivity of the lanthanide complexes. In another aspect, the invention consists of a combination measuring and reference analyte sensor containing both quenchable and nonquenchable luminescent materials. The materials luminesce at different wavelengths and thus may be transmitted together down a single optical fiber and later descriminated by means of filters and separately detected. In a third aspect, the invention consists of a low-noise phosphorescent analyte sensor employing a gatable detector. By use of an analyte-quenchable material having a relatively long-lived phosphorescence, a pulsed excitation source, and selectively coupling the detector after the excitation source is off and any short-lived background luminescence has ended, a low-noise output signal consisting of the long-lived phosphorescence is selectively detected and the concentration of the analyte determined therefrom. In a preferred embodiment, all aspects of the invention are combined to produce a miniature in vivo oxygen sensor for use in the narrow blood vessels of the body.
    • 提供氧传感器用于测定氧的分压。 一方面,本发明由用于氧传感器的氧可淬灭的发光镧系元素络合物组成。 即使固定在固体基质如固体聚合物基质中,并且优选地是席夫碱或β-二酮配体的铽络合物,络合物是氧可淬火的。 描述了用于改善镧系元素络合物的氧敏感性的某些优选方法。 在另一方面,本发明由包含可淬火和不可淬灭的发光材料的组合测量和参考分析物传感器组成。 材料以不同的波长发光,因此可以在单个光纤下一起传输,然后通过滤光器分开检测。 在第三方面,本发明由采用可点阵检测器的低噪声磷光分析物传感器组成。 通过使用具有相对长寿命的磷光的分析物 - 可淬火材料,脉冲激发源,并且在激发源关闭并且任何短暂的背景发光已经结束之后选择性地耦合检测器,由低通滤波器 选择性地检测长寿命的磷光,并由此确定分析物的浓度。 在优选实施例中,本发明的所有方面被组合以产生用于体内狭窄血管的微型体内氧传感器。