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13C metabolic flux analysis at a genome-scale
Saratram Gopalakrishnan
,
Costas D. Maranas
Chemical Engineering
Huck Institutes of the Life Sciences
Research output
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Contribution to journal
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Article
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peer-review
80
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Keyphrases
Arginine
14%
Biomass Composition
14%
Biomass Formation
28%
Biomass Precursor
14%
Central Metabolism
57%
Cofactor Balance
14%
Confidence Interval
14%
Confidence Test
14%
Core Mapping
14%
Core Scale
28%
Decomposition Algorithm
14%
Degradation Pathway
28%
Environmental Background
14%
Fermentation
14%
Formation Rate
28%
Genetic Background
14%
Genome-scale
100%
Genome-scale Metabolic Model
42%
Genome-scale Model
14%
Gluconeogenesis
14%
Glucose Uptake
14%
Glycolysis Flux
14%
Growing Media
14%
Interconversion
14%
Labeled Data
28%
Mapping Model
85%
Metabolic
14%
Metabolic Flux
42%
Metabolic Mapping
28%
Metabolic Model
14%
Nonzero Flux
14%
Reaction Flux
28%
Single Measurement
14%
Sum of Squares
14%
Transhydrogenase
14%
Biochemistry, Genetics and Molecular Biology
Adenosine Triphosphate
75%
Amino Acids
25%
Arginine
50%
Genetics
25%
Gluconeogenesis
25%
Glucose
50%
Glucose Transport
25%
Glycolysis
25%
Metabolic Flux
75%
Metabolic Flux Analysis
100%
Metabolic Pathway
100%
Metabolite
50%
Precursor
25%
Scale up
25%