Type 1 diabetes results from the lack of endogenous production of insulin by the pancreas. According to various references, 4% to 12% of diabetic patients are affected by gastroparesis which delays the digestion process. Gastroparesis is characterized by a constellation of gastrointestinal symptoms in association with delayed gastric emptying (GE). For the first time, a mathematical model is introduced to describe the glycemia dynamics for this significant class of patients. It is shown to yield to a nonlinear time delay model designed for estimation and control.
Diabetic Gastroparesis Modeling and Observer Design / Califano, C.; Scharbarg, E.; Magdelaine, N.; Moog, C. H.. - STAMPA. - 51:13(2018), pp. 97-102. (Intervento presentato al convegno 2nd IFAC Conference on Modelling, Identification and Control of Nonlinear Systems MICNON 2018 tenutosi a Guadalajara, Jalisco; Mexico) [10.1016/j.ifacol.2018.07.261].
Diabetic Gastroparesis Modeling and Observer Design
Califano C.
;
2018
Abstract
Type 1 diabetes results from the lack of endogenous production of insulin by the pancreas. According to various references, 4% to 12% of diabetic patients are affected by gastroparesis which delays the digestion process. Gastroparesis is characterized by a constellation of gastrointestinal symptoms in association with delayed gastric emptying (GE). For the first time, a mathematical model is introduced to describe the glycemia dynamics for this significant class of patients. It is shown to yield to a nonlinear time delay model designed for estimation and control.File | Dimensione | Formato | |
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Note: https://doi.org/10.1016/j.ifacol.2018.07.261
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