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Emergent sub-population behavior uncovered with a community dynamic metabolic model of Escherichia coli diauxic growth | bioRxiv
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Flux balance analysis with or without molecular crowding fails to predict two thirds of experimentally observed epistasis in yeast | Scientific Reports
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A variant of flux balance analysis shows consistency with proteomic and... | Download Scientific Diagram
Emergent sub-population behavior uncovered with a community dynamic metabolic model of Escherichia coli diauxic growth
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Flux balance analysis with or without molecular crowding fails to predict two thirds of experimentally observed epistasis in yeast | Scientific Reports
PLOS Computational Biology: In silico co-factor balance estimation using constraint-based modelling informs metabolic engineering in Escherichia coli
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Improving the flux distributions simulated with genome-scale metabolic models of Saccharomyces cerevisiae – topic of research paper in Biological sciences. Download scholarly article PDF and read for free on CyberLeninka open science
PLOS Computational Biology: Stoichiometric Representation of Gene–Protein–Reaction Associations Leverages Constraint-Based Analysis from Reaction to Gene-Level Phenotype Prediction
Emergent sub-population behavior uncovered with a community dynamic metabolic model of Escherichia coli diauxic growth Supplemen
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The relationship between the target chemical production flux and the... | Download Scientific Diagram
PLOS Computational Biology: Stoichiometric Representation of Gene–Protein–Reaction Associations Leverages Constraint-Based Analysis from Reaction to Gene-Level Phenotype Prediction
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Flux balance analysis with or without molecular crowding fails to predict two thirds of experimentally observed epistasis in yeast | Scientific Reports
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