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Article Dans Une Revue IEEE Journal of Biomedical and Health Informatics Année : 2015

LMI-Based Approaches for the Calibration of Continuous Glucose Measurement Sensors

Résumé

The problem of online calibration and recalibration of continuous glucose monitoring (CGM) devices is considered. Two different parametric relations between interstitial and blood glucose are investigated and constructive algorithms to adaptively estimate the parameters within those relations are proposed. One characteristic is the explicit consideration of measurement uncertainty of the device used to collect the calibration measurements. Another feature is the automatic detection of fingerstick measurements that are not suitable to be used for calibration. Since the methods rely on the solution of linear matrix inequalities resulting in convex optimization problems, the algorithms are of moderate computational complexity and could be implemented on a CGM device. The methods were assessed on clinical data from 17 diabetic patients and the improvements with respect to the current state of the art is shown.
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Dates et versions

hal-01851138 , version 1 (29-07-2018)

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Harald Kirchsteiger, Luca Zaccarian, Eric Renard, Luigi del Re. LMI-Based Approaches for the Calibration of Continuous Glucose Measurement Sensors. IEEE Journal of Biomedical and Health Informatics, 2015, 19 (5), pp.1697 - 1706. ⟨10.1109/JBHI.2014.2341703⟩. ⟨hal-01851138⟩
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