Noninvasive Blood Glucose Assay by Near-Infrared Diffuse Reflectance Spectroscopy of the Human Inner Lip

Author:

Marbach R.1,Koschinsky Th.1,Gries F. A.1,Heise H. M.1

Affiliation:

1. Institut für Spektrochemie und angewandte Spektroskopie, Bunsen-Kirchhoff-Str. 11, W-4600 Dortmund 1, Germany (R.M., H.M.H.); and Diabetes-Forschungsinstitut, Auf'm Hennekamp 65, W-4000 Düsseldorf 1, Germany (Th.K., F.A.G)

Abstract

Near-infrared (NIR) spectra of the human inner lip were obtained by using a special optimized accessory for diffuse reflectance measurements. The partial-least squares (PLS) multivariate calibration algorithm was applied for linear regression of the spectral data between 9000 and 5500 cm−1 (Λ = 1.1–1.8 μm) against blood glucose concentrations determined by a standard clinical enzymatic method. Calibration experiments with a single person were carried out under varying conditions, as well as with a population of 133 different patients, with capillary and venous blood glucose concentration values provided. A genuine correlation between the blood glucose concentrations and the NIR-spectra can be proven. A time lag of about 10 min for the glucose concentration in the spectroscopically probed tissue volume vs. the capillary concentration can be estimated. Mean-square prediction errors obtained by cross-validation were in the range of 45 to 55 mg/dL. An analysis of different variance factors showed that the major contribution to the average prediction uncertainty was due to the reduced measurement reproducibility, i.e., variations in lip position and contact pressure. The results demonstrate the feasibility of using diffuse reflectance NIR-spectroscopy for the noninvasive measurement of blood glucose.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

Reference12 articles.

1. Marbach R., Heise H. M., in Proceedings of the 8th International Conference on Fourier Transform Spectroscopy, Heise H. M., Korte E. H., Siesler H. W., Eds., SPIE Vol. 1575 (SPIE, Bellingham, Washington, 1992), pp. 507–508.

2. Optical reflectance and transmittance of tissues: principles and applications

3. Noninvasive Glucose Monitoring in Diabetic Patients: A Preliminary Evaluation

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