This work presents a novel, differentiable, way of solving dynamic Flux Balance Analysis (dFBA) problems by embedding flux balance analysis of metabolic network models within lumped bulk kinetics for biochemical processes. The proposed methodology utilizes transformation of the bounds of the embedded linear programming problem of flux balance analysis via a logarithmic barrier (interior point) approach. By exploiting the first-order optimality conditions of the interior-point problem, and with further transformations, the approach results in a system of implicit ordinary differential equations. Results from four case studies, show that the CPU and wall-times obtained using the proposed method are competitive with existing state-of-the-art approa...
Systems level modelling and simulations of biological processes are proving to be invaluable in ob...
Systems level modelling and simulations of biological processes are proving to be invaluable in obta...
Abstract Dynamic flux balance analysis (DFBA) has become an instrumental modeling too...
Dynamic flux balance analysis (DFBA) extends flux balance analysis and enables the combined simulati...
Background: Dynamic Flux Balance Analysis (DFBA) is a dynamic simulation framework for biochemical ...
Dynamic flux balance analysis uses a quasi-steady state assumption to calculate an organism's metabo...
Advances in the field of bioinformatics have led to reconstruction of genome-scale networks for a nu...
One of the most relevant topics in the field of systems biology is the study of metabolic networks, ...
Advances in the field of bioinformatics have led to reconstruction of genome-scale networks for a nu...
Mathematical modelling of biological systems is an essential tool for better understanding and for o...
© 2018, Springer Science+Business Media, LLC, part of Springer Nature. Flux balance analysis has pro...
Una red metabólica es el conjunto de reacciones bioquímicas presentes en una célula. Las redes metab...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
Systems level modelling and simulations of biological processes are proving to be invaluable in ob...
Systems level modelling and simulations of biological processes are proving to be invaluable in obta...
Abstract Dynamic flux balance analysis (DFBA) has become an instrumental modeling too...
Dynamic flux balance analysis (DFBA) extends flux balance analysis and enables the combined simulati...
Background: Dynamic Flux Balance Analysis (DFBA) is a dynamic simulation framework for biochemical ...
Dynamic flux balance analysis uses a quasi-steady state assumption to calculate an organism's metabo...
Advances in the field of bioinformatics have led to reconstruction of genome-scale networks for a nu...
One of the most relevant topics in the field of systems biology is the study of metabolic networks, ...
Advances in the field of bioinformatics have led to reconstruction of genome-scale networks for a nu...
Mathematical modelling of biological systems is an essential tool for better understanding and for o...
© 2018, Springer Science+Business Media, LLC, part of Springer Nature. Flux balance analysis has pro...
Una red metabólica es el conjunto de reacciones bioquímicas presentes en una célula. Las redes metab...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
Systems level modelling and simulations of biological processes are proving to be invaluable in ob...
Systems level modelling and simulations of biological processes are proving to be invaluable in obta...
Abstract Dynamic flux balance analysis (DFBA) has become an instrumental modeling too...