AbstractWe present two modifications of the flux balance analysis (FBA) metabolic modeling framework which relax implicit assumptions of the biomass reaction. Our flexible flux balance analysis (flexFBA) objective removes the fixed proportion between reactants, and can therefore produce a subset of biomass reactants. Our time-linked flux balance analysis (tFBA) simulation removes the fixed proportion between reactants and byproducts, and can therefore describe transitions between metabolic steady states. Used together, flexFBA and tFBA model a time scale shorter than the regulatory and growth steady state encoded by the biomass reaction. This combined short-time FBA method is intended for integrated modeling applications to enable detailed ...
New experimental results on bacterial growth inspire a novel top-down approach to study cell metabol...
AbstractA new form of metabolic flux analysis (MFA) called thermodynamics-based metabolic flux analy...
Constraint based modelling methods, such as Flux Balance Analysis (FBA), have been extensively used ...
AbstractWe present two modifications of the flux balance analysis (FBA) metabolic modeling framework...
Understanding the dynamics of information feedback amongst components of complex biological systems ...
Modeling sophisticated biological systems in a way that makes them more apprehensible, without losin...
Constraint-based models are currently the only methodology that allows the study of metabolism at th...
A whole genome metabolic model (GEM) is essentially a reconstruction of a network of enzyme-enabled ...
Constraint-based metabolic models are currently the most comprehensive system-wide models of cellula...
Abstract Background Flux Balance Analysis (FBA) is a ...
Genome-scale flux balance models of metabolism provide testable predictions of all metabolic rates i...
Background: Flux Balance Analysis is a theoretically elegant, computationally efficient, genome-scal...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Metabolism is central to all life. It provides the energy and the building blocks from which the cel...
<div><p>New experimental results on bacterial growth inspire a novel top-down approach to study cell...
New experimental results on bacterial growth inspire a novel top-down approach to study cell metabol...
AbstractA new form of metabolic flux analysis (MFA) called thermodynamics-based metabolic flux analy...
Constraint based modelling methods, such as Flux Balance Analysis (FBA), have been extensively used ...
AbstractWe present two modifications of the flux balance analysis (FBA) metabolic modeling framework...
Understanding the dynamics of information feedback amongst components of complex biological systems ...
Modeling sophisticated biological systems in a way that makes them more apprehensible, without losin...
Constraint-based models are currently the only methodology that allows the study of metabolism at th...
A whole genome metabolic model (GEM) is essentially a reconstruction of a network of enzyme-enabled ...
Constraint-based metabolic models are currently the most comprehensive system-wide models of cellula...
Abstract Background Flux Balance Analysis (FBA) is a ...
Genome-scale flux balance models of metabolism provide testable predictions of all metabolic rates i...
Background: Flux Balance Analysis is a theoretically elegant, computationally efficient, genome-scal...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Metabolism is central to all life. It provides the energy and the building blocks from which the cel...
<div><p>New experimental results on bacterial growth inspire a novel top-down approach to study cell...
New experimental results on bacterial growth inspire a novel top-down approach to study cell metabol...
AbstractA new form of metabolic flux analysis (MFA) called thermodynamics-based metabolic flux analy...
Constraint based modelling methods, such as Flux Balance Analysis (FBA), have been extensively used ...