Engineering & Materials Science
Escherichia coli
100%
Manganese
93%
Restoration
77%
Iron
70%
Gallium
31%
Superoxide Dismutase
21%
Metalloids
20%
Oxidative stress
19%
Biological Availability
18%
Oxidoreductases
17%
Metabolism
14%
Ports and harbors
13%
Toxicity
13%
Enzymes
12%
Bacteria
12%
Costs
4%
Experiments
4%
Agriculture & Biology
manganese
74%
iron
57%
uptake mechanisms
52%
Escherichia coli
50%
mutants
46%
gallium
33%
ribonucleotide reductase
15%
metalloids
15%
phagosomes
14%
bioavailability
10%
homeostasis
9%
superoxide dismutase
8%
oxidative stress
8%
culture media
8%
toxicity
7%
cells
7%
metabolism
6%
bacteria
6%
enzymes
5%
Medicine & Life Sciences
Manganese
94%
Iron
65%
Escherichia coli
55%
Growth
39%
Gallium
31%
superoxide reductase
19%
Metalloids
18%
Ribonucleotide Reductases
15%
Phagosomes
14%
Superoxide Dismutase
10%
Biological Availability
10%
Cell Count
8%
Oxidative Stress
8%
Homeostasis
8%
Bacteria
7%
Costs and Cost Analysis
7%
Enzymes
6%
Chemical Compounds
Strain
54%
Metalloid
20%
Cope Reaction
20%
Ribonucleotide
19%
Oxidative Stress
15%
Superoxide
15%
Bioavailability
15%
Pharmacological Metabolism
12%