Compartmental and noncompartmentalmodels are used to quantify, from multiple steady-state tracer experiments, glucosekinetics and the effect of insulin upon them. Some aspects of experiment design are discussed. A physiological three-compartment model of glucosekinetics is proposed which provides a new quantitative picture of insulincontrol of glucose metabolism. Noncompartmental modeling is shown to have structural errors which prevent physiological insight. Compartmentalmodels make a better use of the informational content of kinetic data, even if more demanding both in terms of modeling and computational effort and in terms of physiological thinking
A basic model highlighting the counter-regulatory roles of insulin and glucagon is proposed to start...
The model is based on physiological parameters, incorporating plasma flow rates, circulatory paths, ...
Master's thesis in cyberneticsIn this thesis, mathematical models describing glucose-insulin regulat...
One of the major goals in metabolic physiology is the development of methods to quantify specific pr...
One of the major goals in metabolic physiology is the development of methods to quantify specific pr...
Type 2 diabetes is a complex chronic metabolic disorder characterized by hyperglycemia associated wi...
This paper presents the results of a computational study that compares simulated compartmental (diff...
The preferred approach to determine the pharmacokinetic (PK) and pharmacodynamic (PD) properties of ...
In vivo evaluation in humans of transport and metabolism of substrates in skeletal muscle of the for...
In this thesis, mathematical models describing glucose-insulin regulation within the human body have...
Why model insulin kinetics? - Glycaemic control for critically ill and Diabetes - Diagnosis of in...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
A basic model highlighting the counter-regulatory roles of insulin and glucagon is proposed to start...
The model is based on physiological parameters, incorporating plasma flow rates, circulatory paths, ...
Master's thesis in cyberneticsIn this thesis, mathematical models describing glucose-insulin regulat...
One of the major goals in metabolic physiology is the development of methods to quantify specific pr...
One of the major goals in metabolic physiology is the development of methods to quantify specific pr...
Type 2 diabetes is a complex chronic metabolic disorder characterized by hyperglycemia associated wi...
This paper presents the results of a computational study that compares simulated compartmental (diff...
The preferred approach to determine the pharmacokinetic (PK) and pharmacodynamic (PD) properties of ...
In vivo evaluation in humans of transport and metabolism of substrates in skeletal muscle of the for...
In this thesis, mathematical models describing glucose-insulin regulation within the human body have...
Why model insulin kinetics? - Glycaemic control for critically ill and Diabetes - Diagnosis of in...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
Blood glucose is controlled by a complex system of insulin and other hormones to assure a constant s...
A basic model highlighting the counter-regulatory roles of insulin and glucagon is proposed to start...
The model is based on physiological parameters, incorporating plasma flow rates, circulatory paths, ...
Master's thesis in cyberneticsIn this thesis, mathematical models describing glucose-insulin regulat...