4.6 Article

In Vivo Near-Infrared Noninvasive Glucose Measurement and Detection in Humans

期刊

APPLIED SPECTROSCOPY
卷 76, 期 9, 页码 1100-1111

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/00037028221092474

关键词

Noninvasive glucose measurement; blood glucose; near-infrared spectroscopy; NIR; single wavelength

资金

  1. National Natural Science Foundation of China [81971657, 81871396, 81471698]

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This study investigates a measurement strategy based on near-infrared spectroscopy to effectively detect glucose signals in a noninvasive manner. The strategy includes a customized detector and a fixing and aiming method to minimize the influence of human variations and probing conditions. Experimental results demonstrate the feasibility of the proposed strategy in detecting glucose in vivo.
In optical noninvasive glucose detection, how to detect the glucose-caused signals from the constant human variations and disturbed probing conditions is always the biggest challenge. Developing effective measurement strategies is essential to realize the detection. A near-infrared (NIR) spectroscopy-based strategy is studied to effectively solve the in vivo measurement issues, obtaining clean blood glucose-caused signals. Two solutions composing our strategy are applied to the NIR spectroscopy-based measurement system to acquire clean raw signals in the data collection, which are a customized high signal-to-noise ratio multi-ring InGaAs detector to reduce the influence of human variations, and a fixing and aiming method to reproduce a consistent measurement condition. Seventeen cases of glucose tolerance test (GTT) on healthy and diabetic volunteers were conducted to validate the strategy. The human experiment results clearly show that the expected blood glucose changes have been detected at 1550 nm. The average correlation coefficient of the 17 cases of GTT between light signal and glucose reference reaches 0.84. The proposed measurement strategy is verified feasible for the glucose detecting in vivo. The strategy provides references to further studies and product developments for the NIR spectroscopy-based glucose measurement and references to other optical measurements in vivo.

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