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Original Article

Study of a new electromagnetic sensor for glycaemia measurement: in vitro results on blood pig

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Pages 276-281 | Published online: 26 Aug 2009

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Read on this site (2)

T. Bouchala, B. Abdelhadi & A. Benoudjit. (2015) New contactless eddy current non-destructive methodology for electric conductivity measurement. Nondestructive Testing and Evaluation 30:1, pages 63-73.
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M Gourzi, A Rouane, R Guelaz, MS Alavi, MB McHugh, M Nadi & P Roth. (2005) Non-invasive glycaemia blood measurements by electromagnetic sensor: Study in static and dynamic blood circulation. Journal of Medical Engineering & Technology 29:1, pages 22-26.
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Articles from other publishers (14)

Mohamed Amine Zidane, Hichem Amar & Amar Rouane. (2021) Study of Two Constraints Impacting Measurements of Human Glycemia Using a Microwave Sensor. Biosensors 11:3, pages 83.
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Supakorn Harnsoongnoen, Urit Charoen-In & Anuwat Wanthong. (2017) Determination of glucose concentration with resonant coplanar microwave sensor. Determination of glucose concentration with resonant coplanar microwave sensor.
Nam-Young Kim, Kishor Kumar Adhikari, Rajendra Dhakal, Zorigt Chuluunbaatar, Cong Wang & Eun-Soo Kim. (2015) Rapid, Sensitive and Reusable Detection of Glucose by a Robust Radiofrequency Integrated Passive Device Biosensor Chip. Scientific Reports 5:1.
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Andrea Tura, Stefano Sbrignadello, Emanuele Mambelli, Paolo Ravazzani, Antonio Santoro & Giovanni Pacini. (2013) Sodium Concentration Measurement during Hemodialysis through Ion-Exchange Resin and Conductivity Measure Approach: In Vitro Experiments. PLoS ONE 8:7, pages e69227.
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Wonsik Ahn & Jin-Tae Kim. (2012) Blood Glucose Measurement Principles of Non-invasive Blood Glucose Meter: Focused on the Detection Methods of Blood Glucose. Journal of Biomedical Engineering Research 33:3, pages 114-127.
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Santhisagar Vaddiraju, Diane J. Burgess, Ioannis Tomazos, Faquir C. Jain & Fotios Papadimitrakopoulos. (2010) Technologies for Continuous Glucose Monitoring: Current Problems and Future Promises. Journal of Diabetes Science and Technology 4:6, pages 1540-1562.
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R.R. Robaina, Héctor Trujillo Alvarado & J.A. Plaza. (2010) Planar coil-based differential electromagnetic sensor with null-offset. Sensors and Actuators A: Physical 164:1-2, pages 15-21.
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Andrea Tura, Stefano Sbrignadello, Domenico Cianciavicchia, Giovanni Pacini & Paolo Ravazzani. (2010) A Low Frequency Electromagnetic Sensor for Indirect Measurement of Glucose Concentration: In Vitro Experiments in Different Conductive Solutions. Sensors 10:6, pages 5346-5358.
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Lisa L. Samuelson & David A. Gerber. (2009) Recent Developments in Less Invasive Technology to Monitor Blood Glucose Levels in Patients with Diabetes: Table 1. Laboratory Medicine 40:10, pages 607-610.
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Hideaki Endo, Yuki Yonemori, Kyoko Hibi, Huifeng Ren, Tetsuhito Hayashi, Wakako Tsugawa & Koji Sode. (2009) Wireless enzyme sensor system for real-time monitoring of blood glucose levels in fish. Biosensors and Bioelectronics 24:5, pages 1417-1423.
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A. Tura, S. Sbrignadello, S. Barison, S. Conti & G. Pacini. (2007) Impedance spectroscopy of solutions at physiological glucose concentrations. Biophysical Chemistry 129:2-3, pages 235-241.
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Andrea Tura, Alberto Maran & Giovanni Pacini. (2007) Non-invasive glucose monitoring: Assessment of technologies and devices according to quantitative criteria. Diabetes Research and Clinical Practice 77:1, pages 16-40.
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A. Caduff, F. Dewarrat, M. Talary, G. Stalder, L. Heinemann & Yu. Feldman. (2006) Non-invasive glucose monitoring in patients with diabetes: A novel system based on impedance spectroscopy. Biosensors and Bioelectronics 22:5, pages 598-604.
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Hideaki Endo, Yuki Yonemori, Kazuya Musiya, Masashi Maita, Toru Shibuya, Huifeng Ren, Tetsuhito Hayashi & Kohji Mitsubayashi. (2006) A needle-type optical enzyme sensor system for determining glucose levels in fish blood. Analytica Chimica Acta 573-574, pages 117-124.
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