A low-power approach to optical glucose sensing via polarisation switching
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BORIS DOI
Date of Publication
April 23, 2025
Publication Type
Article
Division/Institute
Author
Series
Scientific Reports
ISSN or ISBN (if monograph)
2045-2322
Publisher
Nature Research
Language
English
Publisher DOI
PubMed ID
40269078
Uncontrolled Keywords
Description
High-precision polarimetry is crucial for sensing and imaging applications, particularly for glucose monitoring within the physiological range of 50 to 400 mg/dl. Traditional approaches often rely on polarisation modulation using magneto-optic or liquid crystal modulators, which require high voltages or currents, limiting their practicality for wearable or implantable devices. In this work, we propose a polarisation-switching technique that alternates between two discrete polarisation states, offering a low-power alternative with miniaturisation potential. Using this method, we achieved a Mean Absolute Relative Difference of 7.7% and a Standard Error of Prediction of 9.6 mg/dl across the physiological glucose range, comparable to commercial continuous glucose monitors. Our approach demonstrates a limit of detection of approximately 40 mg/dl, with measurements performed in phosphate-buffered saline spiked with glucose. This work establishes polarisation switching as a viable alternative for glucose sensing, providing a foundation for future development of wearable and implantable glucose monitoring systems. By eliminating power-intensive components, our approach addresses key limitations of traditional polarimetric methods, paving the way for more accessible and energy-efficient diabetes management technologies.
File(s)
File | File Type | Format | Size | License | Publisher/Copright statement | Content | |
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s41598-025-99367-0.pdf | text | Adobe PDF | 2.3 MB | Attribution (CC BY 4.0) | published |