Dynamic models formulated as a set of ordinary differential equations provide a detailed description of the time-evolution of a system. Such models of (bio)chemical reaction networks have contributed to important advances in biotechnology and biomedical applications, and their impact is foreseen to increase in the near future. Hence, the task of dynamic model building has attracted much attention from scientists working at the intersection of biochemistry, systems theory, mathematics, and computer science, among other disciplines-an area sometimes called systems biology. Before a model can be effectively used, the values of its unknown parameters have to be estimated from experimental data. A necessary condition for parameter estimation is ...
This thesis concerns the identification of dynamic models in systems biology. and is structured into...
A powerful way of gaining insight into biological systems is by creating a nonlinear differential eq...
Background: Kinetic models of biochemical systems usually consist of ordinary differential equations...
In this paper we consider the question of parameter identifiability for biochemical reaction networ...
Abstract: Dynamic modelling is a powerful tool for studying biological networks. Reachability (contr...
6 pages, 2 figures, 1 tableModel parametric identification is a critical yet often overlooked step f...
22 páginas, 5 figuras, 2 tablas.-- This is an open access article distributed under the terms of the...
In systems biology, models often contain a large number of unknown or only roughly known parameters ...
Metabolic networks are typically large, containing many metabolites and reactions. Dynamical models ...
peer reviewedIn this paper we consider the question of parameter identifiability for biochemical rea...
25 páginas, 11 figuras, 2 tablasDynamic models of biochemical networks are often formulated as sets ...
In this paper we consider the question of parameter identifiability for biochemical reaction network...
In this paper we consider the question of parameter identifiability for biochemical reaction network...
[Background] Kinetic models of biochemical systems usually consist of ordinary diff...
In this paper we consider the question of parameter identifiability for biochemical reaction networ...
This thesis concerns the identification of dynamic models in systems biology. and is structured into...
A powerful way of gaining insight into biological systems is by creating a nonlinear differential eq...
Background: Kinetic models of biochemical systems usually consist of ordinary differential equations...
In this paper we consider the question of parameter identifiability for biochemical reaction networ...
Abstract: Dynamic modelling is a powerful tool for studying biological networks. Reachability (contr...
6 pages, 2 figures, 1 tableModel parametric identification is a critical yet often overlooked step f...
22 páginas, 5 figuras, 2 tablas.-- This is an open access article distributed under the terms of the...
In systems biology, models often contain a large number of unknown or only roughly known parameters ...
Metabolic networks are typically large, containing many metabolites and reactions. Dynamical models ...
peer reviewedIn this paper we consider the question of parameter identifiability for biochemical rea...
25 páginas, 11 figuras, 2 tablasDynamic models of biochemical networks are often formulated as sets ...
In this paper we consider the question of parameter identifiability for biochemical reaction network...
In this paper we consider the question of parameter identifiability for biochemical reaction network...
[Background] Kinetic models of biochemical systems usually consist of ordinary diff...
In this paper we consider the question of parameter identifiability for biochemical reaction networ...
This thesis concerns the identification of dynamic models in systems biology. and is structured into...
A powerful way of gaining insight into biological systems is by creating a nonlinear differential eq...
Background: Kinetic models of biochemical systems usually consist of ordinary differential equations...