Method and assembly for determining the temperature of a test sensor
Abstract
An assembly determines an analyte concentration in a sample of body fluid. The assembly includes a test sensor having a fluid-receiving area for receiving a sample of body fluid, where the fluid-receiving area contains a reagent that produces a measurable reaction with an analyte in the sample. The assembly also includes a meter having a port or opening configured to receive the test sensor; a measurement system configured to determine a measurement of the reaction between the reagent and the analyte; and a temperature-measuring system configured to determine a measurement of the test-sensor temperature when the test sensor is received into the opening. The meter determines a concentration of the analyte in the sample according to the measurement of the reaction and the measurement of the test-sensor temperature.
Claims
exact text as granted — not AI-modified1 - 14 . (canceled)
15 . A method for determining an analyte concentration in a sample of body fluid, comprising the steps of:
receiving a test sensor, the test sensor comprising a fluid-receiving area for receiving a sample of body fluid, the fluid-receiving area containing a reagent that produces a measurable reaction with an analyte in the sample, the test sensor having a test-sensor temperature and the reagent having a reagent temperature, wherein the test sensor has a grating disposed along a surface of the test sensor, the grating including a series of parallel linear structures equally separated by a distance that changes in response to temperature; determining, with a temperature-measuring system, a measurement of the test-sensor temperature when the test sensor is received, wherein the temperature-measuring system includes a light source and a light detector, the light source being configured to direct incident light to the grating, and the detector being configured to receive, from the grating, diffracted light that changes according to changes in the distance separating the linear structures of the grating, the temperature-measuring system determining the measurement of the test-sensor temperature according to the diffracted light; and determining a concentration of the analyte in the sample according to the measurement of the reaction and the measurement of the test-sensor temperature.
16 . The method of claim 15 , wherein the light source includes a laser of a fixed wavelength directed to the grating, and the detector receives the diffracted light from the grating according to an angle, the angle indicating the distance separating the linear structures of the grating, and the temperature-measuring system determining the measurement of the test-sensor temperature according to the angle.
17 . The method of claim 16 , wherein the fixed wavelength ranges from approximately 450 nm to 1800 nm.
18 . The method of claim 16 , wherein the detector includes a linear photodiode array.
19 . The method of claim 15 , wherein the light source generates white light and directs the white light to the grating, and the detector receives the diffracted light from the grating, the diffracted light including red, green, and blue (RGB) components, the RGB components in the diffracted light indicating the distance separating the linear structures of the grating, and the temperature-measuring system determining the measurement of the test-sensor temperature according to the angle.
20 . The method of claim 19 , wherein the detector includes red, green, and blue photodiodes.
21 . A method for determining an analyte concentration in a sample of body fluid, comprising the steps of:
receiving a test sensor, the test sensor comprising a fluid-receiving area for receiving a sample of body fluid, the fluid-receiving area containing a reagent that produces a measurable reaction with an analyte in the sample, the test sensor having a test-sensor temperature and the reagent having a reagent temperature, wherein the test sensor has a polarizing material disposed along a surface of the test sensor, the polarizing material causing a degree of polarization of light reflected from the polarizing material, the polarizing material having a structure that changes in response to temperature and changes the degree of polarization; determining, with a temperature-measuring system, a measurement of the test-sensor temperature when the test sensor is received, wherein the temperature-measuring system includes a light source and a light detector, the light source being configured to direct incident light to the polarizing material, and the detector being configured to receive, from the polarizing material, an amount of reflected light that changes according to the degree of polarization, the temperature-measuring system determining the measurement of the test-sensor temperature according to the amount of reflected light received by the detector; and determining a concentration of the analyte in the sample according to the measurement of the reaction and the measurement of the test-sensor temperature.
22 . The method of claim 21 , wherein the light source includes a laser of a fixed wavelength directed to the polarizing material.
23 . The method of claim 22 , wherein the fixed wavelength ranges from approximately 450 nm to 1800 nm.
24 . The method of claim 21 , wherein the detector includes photodiode and a polarizing filter.Join the waitlist — get patent alerts
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