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The paper presents a system for measuring blood glucose level based on spectroscopy in the near infrared range. Specific features of this system are limited spectral range of measurements, and the use of visible light detector to identify the density of irradiated tissue and to correct measurement results in the infrared range. Presented are principles of measuring system construction, including measures undertaken to increase its precision and results of tests carried out using the constructed measurement system. The results are close to those obtained from a traditional meter.
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Tom
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175--177
Opis fizyczny
Bibliogr. 7 poz., fot., rys., schem., wykr.
Twórcy
autor
- Poznan University of Technology, 3 Polanka St., 61-655 Poznan
autor
- Poznan University of Technology, 3 Polanka St., 61-655 Poznan
autor
- Poznan University of Technology, 3 Polanka St., 61-655 Poznan
Bibliografia
- [1] World Health Organization, www.who.int, January 2016.
- [2] Tae-Woong Koo: Measurement of blood analytes in turbid biological tissue using near-infrared Raman spectroscopy. Doctoral thesis, MIT, 2001.
- [3] PAP – Science in Poland, www.mojacukrzyca.org, December 2015.
- [4] Enejder A. M., Scecina T. G., Hunter M., Shih W. C., Feld M. S., Oh J., Sasic S., Horowitz G. L.: Raman Spectroscopy for Noninvasive Glucose Measurements. Journal of Biomedical Optics, 0311141-0311149, 2005.
- [5] Zieliński W., Rajcy A. (work group): Metody spektroskopowe i ich zastosowanie do identyfikacji związków organicznych, WNT, 1995.
- [6] Forster Peter Johann: http://www.p-forster.com, February 2016.
- [7] Jyoti Yadav, Asha Rani, Vijander Singh: Near-infrared LED based Non-invasive Blood Glucose Sensor. SPIN, 591-594, 2014.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ea31401f-20d5-4e27-953a-b46ea37384aa