In this paper biological compartmental models are considered which take into account the intrinsic randomness of the transport rate parameters and their possible variability in time. An identification procedure is presented for the estimation of the stochastic processes representing the transport rate parameters of a compartmental model from a noisy input-output experiment. The problem is formulated in terms of nonlinear filtering. A simple model is discussed for the case in which the transport rate parameters are independent of each other. The possibility of testing possible important features of the behavior of the transport rate parameters is also evidenced
Présentation PosterInternational audienceObjectives. With the advent of realtime biotechnologies, mo...
Présentation PosterInternational audienceObjectives. With the advent of realtime biotechnologies, mo...
Kinetic models are at the heart of system identification. A priori chosen rate functions may, howeve...
In this paper linear time invariant biological compartmental models are considered, in which the tra...
This dissertation is concerned with a discrete population of particles in a steady state compartment...
This dissertation is concerned with a discrete population of particles in a steady state compartment...
This dissertation is concerned with a discrete population of particles in a steady state compartment...
Vita.Several different techniques have been developed recently for estimating the transition rate co...
Problems which arise in quantitative studies on the kinetics of exogenous and endogenous chemical su...
Problems which arise in quantitative studies on the kinetics of exogenous and endogenous chemical su...
Large scale biological responses are inherently uncertain, in part as a consequence of noisy systems...
The compartment model, so often used in nuclear medicine and in pharmacokinetics, is formed by a set...
International audienceThe paper is devoted to the identification of stochastic loads applied to a no...
An essential part of mathematical modelling is the accurate and reliable estimation of model paramet...
The dynamic behavior of many chemical and biological processes is defined by a set of nonlinear diff...
Présentation PosterInternational audienceObjectives. With the advent of realtime biotechnologies, mo...
Présentation PosterInternational audienceObjectives. With the advent of realtime biotechnologies, mo...
Kinetic models are at the heart of system identification. A priori chosen rate functions may, howeve...
In this paper linear time invariant biological compartmental models are considered, in which the tra...
This dissertation is concerned with a discrete population of particles in a steady state compartment...
This dissertation is concerned with a discrete population of particles in a steady state compartment...
This dissertation is concerned with a discrete population of particles in a steady state compartment...
Vita.Several different techniques have been developed recently for estimating the transition rate co...
Problems which arise in quantitative studies on the kinetics of exogenous and endogenous chemical su...
Problems which arise in quantitative studies on the kinetics of exogenous and endogenous chemical su...
Large scale biological responses are inherently uncertain, in part as a consequence of noisy systems...
The compartment model, so often used in nuclear medicine and in pharmacokinetics, is formed by a set...
International audienceThe paper is devoted to the identification of stochastic loads applied to a no...
An essential part of mathematical modelling is the accurate and reliable estimation of model paramet...
The dynamic behavior of many chemical and biological processes is defined by a set of nonlinear diff...
Présentation PosterInternational audienceObjectives. With the advent of realtime biotechnologies, mo...
Présentation PosterInternational audienceObjectives. With the advent of realtime biotechnologies, mo...
Kinetic models are at the heart of system identification. A priori chosen rate functions may, howeve...