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Symposium on Potentially Implantable Glucose Sensors

Noninvasive Glucose Monitoring of the Aqueous Humor of the Eye: Part I. Measurement of Very Small Optical Rotations

  1. B Rabinovitch,
  2. W F March and
  3. Robert L Adams
  1. Department of Ophthalmology, University of Oklahoma Health Sciences Center
  2. Dean A. McGee Eye Institute Oklahoma City, Oklahoma
  1. Address reprint requests to B. Rabinovitch, Dean A. McGee Eye Institute, 608 Stanton L. Young Drive, Oklahoma City, Oklahoma 73104.
Diabetes Care 1982 May; 5(3): 254-258. https://doi.org/10.2337/diacare.5.3.254
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Abstract

We have described the concept of using the aqueous humor glucose as a measure of the blood glucose concentration, with a view to developing a noninvasive glucose monitor for diabetic individuals. We have conceived of a scleral lens that houses a light source, polarizers, other electro-optic units, and a light detector, and which measures the optical rotation of the aqueous humor continuously. We have built an optical bench mock-up of the glucose sensor and assessed the limits of its capabilities. We have described a physical method, employing the Faraday effect, that modulates the incident light and uses a compensator to introduce a feedback mechanism giving a null-point technique capable of measuring extremely small rotations with an accuracy of 0.4 s of arc. We have used this and have measured the optical rotations of glucose solutions from 0.02 to 0.1%, and have demonstrated linearity in both cases. Miniaturization of the technique is discussed.

  • Copyright © 1982 by the American Diabetes Association

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May 1982, 5(3)
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Noninvasive Glucose Monitoring of the Aqueous Humor of the Eye: Part I. Measurement of Very Small Optical Rotations
B Rabinovitch, W F March, Robert L Adams
Diabetes Care May 1982, 5 (3) 254-258; DOI: 10.2337/diacare.5.3.254

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Noninvasive Glucose Monitoring of the Aqueous Humor of the Eye: Part I. Measurement of Very Small Optical Rotations
B Rabinovitch, W F March, Robert L Adams
Diabetes Care May 1982, 5 (3) 254-258; DOI: 10.2337/diacare.5.3.254
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More in this TOC Section

  • Introduction
  • Implanting the Glucose Enzyme Electrode: Problems, Progress, and Alternative Solutions
  • Chemically Sensitive Field Effect Transistor as a Potential Implantable Glucose Sensor
Show more Symposium on Potentially Implantable Glucose Sensors

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© 2021 by the American Diabetes Association. Diabetes Care Print ISSN: 0149-5992, Online ISSN: 1935-5548.