Towards a Wearable Non-invasive Blood Glucose Monitoring Device

Every day, about 150 Million people worldwide face the problem of diabetic metabolic control. Both the hypo- and hyper- glycaemic conditions of patients have fatal consequences and warrant blood glucose monitoring at regular interval. Existing blood glucose monitors can be widely classified into thr...

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Veröffentlicht in:Journal of physics. Conference series 2012-01, Vol.365 (1), p.12004-5
Hauptverfasser: Andrews, Joseph Thomas, Solanki, J, Choudhary, Om P, Chouksey, S, Malvia, N, Chaturvedi, P, Sen, P
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Sprache:eng
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Zusammenfassung:Every day, about 150 Million people worldwide face the problem of diabetic metabolic control. Both the hypo- and hyper- glycaemic conditions of patients have fatal consequences and warrant blood glucose monitoring at regular interval. Existing blood glucose monitors can be widely classified into three classes viz., invasive, minimally invasive, and noninvasive. Invasive monitoring requires small volume of blood and are inappropriate for continuous monitoring of blood glucose. Minimally invasive monitors analyze tissue fluid or extract few micro litre of blood only. Also the skin injury is minimal. On the other hand, noninvasive devices are painless and void of any skin injury. We use an indigenously developed polarization sensitive Optical Coherence Tomography to measure the blood glucose levels. Current trends and recent results with the device are discussed.
ISSN:1742-6596
1742-6588
1742-6596
DOI:10.1088/1742-6596/365/1/012004