Method and apparatus for non-invasive glucose sensing through the eye
First Claim
1. A system for sensing an analyte in the aqueous humor of the eye of a patient, the system comprising:
- a light source unit to provide at least three light beams wherein each light beam includes a wavelength and modulation frequency that is different from the other light beams;
a polarization mechanism, optically positioned to receive the light beams, and to linearly polarize each light beam;
a detector unit, optically positioned to receive the light beams reflected by the eye, to detect a change in polarization of the light beams, wherein the polarization of the light beams are changed as a result of contact with analyte in the aqueous humor of the eye; and
a processing unit, coupled to the detector unit, to determine the concentration of analyte in the aqueous humor of the eye using information which is representative of the change in polarization of the light beams.
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Abstract
There are many inventions described and illustrated herein. In one aspect, the present invention is a system and technique for non-invasively measuring, monitoring, inspecting, characterizing, determining and/or evaluating the blood glucose level in the aqueous humor of the eye of a patient (for example, a diabetic). In one embodiment, the present invention employs a plurality of wavelengths of light (for example, more than three) to measure, monitor, characterize, determine and/or evaluate the blood glucose level or concentration of a patient. The plurality of wavelengths of light may be directed into the aqueous humor of the eye and the reflected light (i.e., the light reflected by the eye) is detected and analyzed to provide information which is representative of the blood glucose level or concentration of the patient.
62 Citations
20 Claims
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1. A system for sensing an analyte in the aqueous humor of the eye of a patient, the system comprising:
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a light source unit to provide at least three light beams wherein each light beam includes a wavelength and modulation frequency that is different from the other light beams;
a polarization mechanism, optically positioned to receive the light beams, and to linearly polarize each light beam;
a detector unit, optically positioned to receive the light beams reflected by the eye, to detect a change in polarization of the light beams, wherein the polarization of the light beams are changed as a result of contact with analyte in the aqueous humor of the eye; and
a processing unit, coupled to the detector unit, to determine the concentration of analyte in the aqueous humor of the eye using information which is representative of the change in polarization of the light beams. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11)
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12. A system for sensing an analyte in the aqueous humor of the eye of a patient, the system comprising:
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a light source unit to provide at least three light beams wherein each light beam includes a wavelength and modulation frequency that is different from the other light beams;
a polarization mechanism, optically positioned to receive the light beams, and to linearly polarize each light beam;
a beam steering mechanism, optically positioned to receive linearly polarized light beams, that is capable of directing the linearly polarized light beams through the anterior chamber of the eye of the patient;
an image tracking unit, coupled to the beam steering mechanism, to control the beam steering mechanism in response to motion of the eye of the patient;
a detector unit, optically positioned to receive the light beams reflected by the eye, to detect a change in polarization of the light beams, wherein the polarization of the light beams are changed as a result of contact with analyte in the aqueous humor of the eye; and
a processing unit, coupled to the detector unit, to determine the concentration of analyte in the aqueous humor of the eye using information which is representative of the change in polarization of the light beams. - View Dependent Claims (13, 14, 15, 16, 17, 18, 19, 20)
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Specification