US2006030761A1PendingUtilityA1

Micro optical sensor device

Individually held — no corporate assignee on recordPriority: Jun 19, 1998Filed: Jun 27, 2005Published: Feb 9, 2006
Est. expiryJun 19, 2018(expired)· nominal 20-yr term from priority
Inventors:Eric Raskas
A61B 5/1459G01N 2400/00G01N 21/78B33Y 80/00G01N 33/5438A61B 5/14532G01N 21/8507
49
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Claims

Abstract

A sensor device for measuring a concentration of a substance within a sample comprises a sensor comprising an optical transmission member having a first end and a second end, the second end having a tip portion attached thereto and an active material incorporated within the tip portion, the tip portion adapted to be inserted into a sample, the active material capable of interacting with a substance within a sample, a light source coupled to the first end of the sensor for emitting a beam of light into and through the sensor and into a sample, the emitted beam of light having a wavelength and the active material interacting with a substance within a sample to change the wavelength of the emitted beam of light to produce a reflected beam of light and the sensor for transmitting the reflected beam of light out of the second end thereof, an optical detector for receiving the reflected beam of light from the second end of the sensor for producing a signal indicative of the reflected beam of light, and a processor for receiving the signal indicative of the reflected beam of light and for processing the signal to determine the concentration of a substance within a sample.

Claims

exact text as granted — not AI-modified
1 . A sensor device for measuring a concentration of a substance within a sample comprising: 
 a sensor comprising an optical transmission member having a first end and a second end, the second end having a tip portion attached thereto and an active material incorporated within the tip portion, the tip portion adapted to be inserted into a sample, the active material capable of interacting with a substance within a sample;    a light source coupled to the first end of the sensor for emitting a beam of light into and through the sensor and into a sample, the emitted beam of light having a wavelength and the active material interacting with a substance within a sample to change the wavelength of the emitted beam of light to produce a reflected beam of light and the sensor for transmitting the reflected beam of light out of the second end thereof,    means for receiving the reflected beam of light from the second end of the sensor for producing a signal indicative of the reflected beam of light; and    a processor for receiving the signal indicative of the reflected beam of light and for processing the signal to determine the concentration of a substance within a sample.    
     
     
         2 . The sensor device of  claim 1  wherein the active material is preselected to interact with a predetermined substance within a sample.  
     
     
         3 . The sensor device of  claim 1  wherein the reflected beam of light has a wavelength which is different from the wavelength of the emitted beam of light.  
     
     
         4 . The sensor device of  claim 1  wherein the optical transmission member is made from a material selected from the group consisting of a fiber optic, organic polymers, inorganic alkoxysilanes, lead borosilicate, fused silica, and combinations thereof.  
     
     
         5 . The sensor device of  claim 1  wherein the concentration to be measured is glucose and the sample is a human.  
     
     
         6 . The sensor device of  claim 1  further comprising a pencil shaped and sized body having a tip portion, a central body, and an end cap.  
     
     
         7 . The sensor device of  claim 1  wherein the tip portion comprises a biologically active compound that is immobilized in an environment that is optically reactive.  
     
     
         8 . A sensor device for measuring a concentration of a substance within a sample comprising: 
 a light source adapted to emit an emitted beam of light having a first wavelength;    an optical transmission member having a tip portion, the optical transmission member operatively connected to the light source such that the emitted beam of light is transmitted through the optical transmission member, the tip portion including an active material, the active material adapted to receive the emitted beam of light and to reflect a reflected beam of light through the member, the reflected beam of light having a second wavelength different than the first wavelength, the reflected beam of light relating to a concentration of a substance within a sample;    a detector operatively connected to the optical transmission member and adapted to receive the reflected beam of light and to produce a signal; and    a processor adapted to receive and process the signal and to determine the concentration of the substance within the sample.    
     
     
         9 . The sensor device of  claim 8  wherein the optical transmission member is made from a material selected from the group consisting of a fiber optic, organic polymers, inorganic alkoxysilanes, lead borosilicate, fused silica, and combinations thereof.  
     
     
         10 . The sensor device of  claim 8  wherein the tip portion is shaped and adapted to be inserted into a cell without damaging the cell.  
     
     
         11 . The sensor device of  claim 8  wherein the tip portion has a diameter of less than 30 microns.  
     
     
         12 . The sensor device of  claim 8  wherein the concentration to be measured is glucose and the sample is a human.  
     
     
         13 . The sensor device of  claim 8  wherein the tip portion has a diameter of less than 20 microns.  
     
     
         14 . The sensor device of  claim 8  wherein the tip portion has a diameter of less than 10 microns.  
     
     
         15 . A sensor device for measuring a concentration of a substance within a sample comprising: 
 a light source adapted to emit an emitted beam of light having a first wavelength;    an optical transmission member having a tip portion, the optical transmission member operatively connected to the light source such that the emitted beam of light is transmitted through the optical transmission member, the tip portion including a first active material and a second active material, the first active material adapted to receive the emitted beam of light and to reflect a first reflected beam of light through the optical transmission member, the second active material adapted to receive the emitted beam of light and to reflect a second reflected beam of light through the optical transmission member, the first reflected beam of light having a second wavelength different than the first wavelength, the second reflected beam of light having a third wavelength different than the first wavelength, the first reflected beam of light relating to a concentration of a first substance within a sample, the second reflected beam of light relating to a concentration of a second substance within a sample;    a detector operatively connected to the optical transmission member and adapted to receive the first and second reflected beams of light and to produce a signal; and    a processor adapted to receive and process the first signal and to determine the concentration of the first substance within the sample, and to receive and process the second signal and to determine the concentration of the second substance within the sample.    
     
     
         16 . The sensor device of  claim 15  wherein the optical transmission member is made from a material selected from the group consisting of a fiber optic, organic polymers, inorganic alkoxysilanes, lead borosilicate, fused silica, and combinations thereof.  
     
     
         17 . The sensor device of  claim 16  wherein the tip portion is shaped and adapted to be inserted into a cell without damaging the cell.  
     
     
         18 . The sensor device of  claim 15  wherein the first concentration to be measured is glucose and the sample is a human.  
     
     
         19 . The sensor device of  claim 15  wherein the tip portion has a diameter of less than 10 microns.  
     
     
         20 . The sensor device of  claim 15  wherein the tip portion comprises a biologically active compound that is immobilized in an environment that is optically reactive.

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