Sensor element and method for making the same
First Claim
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1. A sensor element comprising:
- an optical fiber having a distal portion coated with a matrix made from a hydrophobic material that is permeable to at least one analyte;
a first plurality of vesicles disposed in said matrix containing a first aqueous sensing solution with a first fluorescent dye indicator that is responsive to a particular analyte; and
a second plurality of vesicles disposed in said matrix containing a second aqueous sensing solution with a second fluorescent dye indicator that is responsive to a second analyte, said vesicles being dispersed throughout said matrix, said matrix being only slightly thicker than the size of one of said vesicles.
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Abstract
A sensor element includes an analyte-permeable matrix which supports and maintains a sensing solution containing an analyte-sensitive indicator substance in a plurality of tiny vesicles. The sensor element is prepared by combining the sensing solution with an emuslifier that renders the solution dispersed within the matrix material. The sensing solution remains suspended in these dispersed vesicles after the matrix solidifies. A sensor element made in accordance with the present invention may be placed at the end of an optical fiber.
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Citations
8 Claims
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1. A sensor element comprising:
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an optical fiber having a distal portion coated with a matrix made from a hydrophobic material that is permeable to at least one analyte; a first plurality of vesicles disposed in said matrix containing a first aqueous sensing solution with a first fluorescent dye indicator that is responsive to a particular analyte; and a second plurality of vesicles disposed in said matrix containing a second aqueous sensing solution with a second fluorescent dye indicator that is responsive to a second analyte, said vesicles being dispersed throughout said matrix, said matrix being only slightly thicker than the size of one of said vesicles. - View Dependent Claims (2, 3, 4, 5)
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6. A method for making a sensor element comprising the steps of:
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combining a first sensing solution including an indicator substance that is responsive to an analyte with an emulsifier solution to form a first emulsified solution; mixing a liquified matrix that is immiscible with the first sensing solution, and that is permeable to at least one analyte with the first emulsified solution; combining a second sensing solution that is immiscible with the liquified matrix and the first sensing solution, and having an indicator that is receptive to a second analyte with an emulsifier to form a second emulsified solution; mixing the second emulsified solution with the liquified matrix and the first emulsified solution; dispersing the first and second emulsified solutions as a plurality of vesicles in the liquified matrix material; and causing the liquified matrix to solidify in a thickness only slightly greater than the size of one of said vesicles. - View Dependent Claims (7, 8)
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Specification