A model of the endogenous glucose balance incorporating the characteristics of glucose transporters
暂无分享,去创建一个
Steen Andreassen | Tom Arleth | Marco O. Federici | Massimo M. Benedetti | S. Andreassen | M. M. Benedetti | M. Federici | Tom Arleth
[1] E R Carson,et al. Preliminary experience of the DIAS computer model in providing insulin dose advice to patients with insulin dependent diabetes. , 1998, Computer methods and programs in biomedicine.
[2] T. Deutsch,et al. Compartmental models for glycaemic prediction and decision-support in clinical diabetes care: promise and reality. , 1998, Computer methods and programs in biomedicine.
[3] S Andreassen,et al. DIAS--the diabetes advisory system: an outline of the system and the evaluation results obtained so far. , 1997, Computer methods and programs in biomedicine.
[4] S. Andreassen,et al. Use of the DIAS model to predict unrecognised hypoglycaemia in patients with insulin-dependent diabetes. , 1996, Computer methods and programs in biomedicine.
[5] S Andreassen,et al. Analysing the hypoglycaemic counter-regulation: a clinically relevant phenomenon? , 1996, Computer methods and programs in biomedicine.
[6] J. Holst,et al. Effects of insulin on glucose turnover rates in vivo: isotope dilution versus constant specific activity technique. , 1996, Metabolism: clinical and experimental.
[7] L. Korányi,et al. Athletes With IDDM Exhibit Impaired Metabolic Control and Increased Lipid utilization With No Increase in Insulin Sensitivity , 1995, Diabetes.
[8] Ole K. Hejlesen,et al. Optimization and Evaluation of a probabilistic Computer Model of the Glucose Metabolism , 1995 .
[9] Isao Saitou,et al. INFLUENCE OF HYPERINSULINEMIA TO CORONARY ARTERY DISEASE , 1994 .
[10] G M Steil,et al. Dynamics of Glucose Production and Uptake Are More Closely Related to Insulin in Hindlimb Lymph Than in Thoracic Duct Lymph , 1994, Diabetes.
[11] Rees Se. Causal probabilistic network modelling of lipid and lipoprotein metabolism. , 1994 .
[12] サイバネットシステム,et al. MATLAB : high-performance numeric computation and visualization software : エクスターナルインタフェースガイド , 1994 .
[13] E. Carson,et al. A probabilistic approach to glucose prediction and insulin dose adjustment: description of metabolic model and pilot evaluation study. , 1994, Computer methods and programs in biomedicine.
[14] C Cobelli,et al. Hepatic and extrahepatic insulin action in humans: measurement in the absence of non-steady-state error. , 1993, The American journal of physiology.
[15] J. Halter,et al. The roles of insulin and catecholamines in the glucoregulatory response during intense exercise and early recovery in insulin-dependent diabetic and control subjects. , 1993, The Journal of clinical endocrinology and metabolism.
[16] S. Kalhan,et al. Hepatic insulin action in adolescents with insulin-dependent diabetes mellitus: relationship with long-term glycemic control. , 1993, Metabolism: clinical and experimental.
[17] Ewart R. Carson,et al. Causal Probabilistic Network Modeling - An Illustration of its Role in the Management of Chronic Diseases , 1992, IBM Syst. J..
[18] J. Slot,et al. Interaction of Insulin and Exercise on Glucose Transport in Muscle , 1992, Diabetes Care.
[19] A. Marette,et al. Biochemical and immunocytochemical localization of the 'GLUT5 glucose transporter' in human skeletal muscle. , 1992, The Biochemical journal.
[20] E D Lehmann,et al. A physiological model of glucose-insulin interaction in type 1 diabetes mellitus. , 1992, Journal of biomedical engineering.
[21] H. Yki-Järvinen,et al. Mechanisms of hepatic and peripheral insulin resistance during acute infections in humans. , 1992, The Journal of clinical endocrinology and metabolism.
[22] F. Dela,et al. Seven days of bed rest decrease insulin action on glucose uptake in leg and whole body. , 1991, Journal of applied physiology.
[23] K. Alberti,et al. Peripheral and hepatic insulin sensitivity in healthy elderly human subjects , 1991, European journal of clinical investigation.
[24] J O Hill,et al. Interaction of exercise and insulin action in humans. , 1991, The American journal of physiology.
[25] Ewart R. Carson,et al. A Model-Based Approach to Insulin Adjustment , 1991, AIME.
[26] P L Miller,et al. Combining statistical, rule-based, and physiologic model-based methods to assist in the management of diabetes mellitus. , 1990, Computers and biomedical research, an international journal.
[27] G Albrecht,et al. A model-based system for the individual prediction of metabolic responses to improve therapy in type I diabetes. , 1990, Hormone and metabolic research. Supplement series.
[28] D Rodbard,et al. Computer Simulation of Plasma Insulin and Glucose Dynamics After Subcutaneous Insulin Injection , 1989, Diabetes Care.
[29] R. Rizza,et al. Effects of Hyperglycemia on Glucose Production and Utilization in Humans: Measurement With [23H]-, [33H]-, and [614C]Glucose , 1986, Diabetes.
[30] W. Kriz,et al. Renal Physiology , 1986, Springer New York.
[31] D. James,et al. Exercise-induced hepatic glucose output is precisely sensitive to the rate of systemic glucose supply. , 1985, Metabolism: clinical and experimental.
[32] E.Af.. Textbook of nephrology , 1983 .
[33] C Verdonk,et al. Insulin increases the maximum velocity for glucose uptake without altering the Michaelis constant in man. Evidence that insulin increases glucose uptake merely by providing additional transport sites. , 1982, The Journal of clinical investigation.
[34] P. Felig,et al. Lactate and glucose exchange across the forearm, legs, and splanchnic bed during and after prolonged leg exercise. , 1982, The Journal of clinical investigation.
[35] R. DeFronzo,et al. The Effect of Insulin on the Disposal of Intravenous Glucose: Results from Indirect Calorimetry and Hepatic and Femoral Venous Catheterization , 1981, Diabetes.
[36] R. DeFronzo,et al. Synergistic interaction between exercise and insulin on peripheral glucose uptake. , 1981, The Journal of clinical investigation.
[37] S. Silbernagl,et al. Color atlas of physiology , 1981 .
[38] L. Mandarino,et al. Dose-response characteristics for effects of insulin on production and utilization of glucose in man. , 1981, The American journal of physiology.
[39] R. DeFronzo,et al. Influence of hyperinsulinemia, hyperglycemia, and the route of glucose administration on splanchnic glucose exchange. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[40] E. A. Dawes,et al. Biochemical calculations, 2nd Edition By Irwin H. Segel. John Wiley & Sons, London, New York, Sydney, Toronto. xvii + 441 pp. £5.35 , 1976 .
[41] P. Felig,et al. Substrate turnover during prolonged exercise in man. Splanchnic and leg metabolism of glucose, free fatty acids, and amino acids. , 1974, The Journal of clinical investigation.
[42] William Francis Ganong,et al. Review of Medical Physiology , 1969 .