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Keyphrases
Older Adults
100%
Skeletal muscle Protein Synthesis
100%
Erythropoietin
100%
Muscle Protein Synthesis
66%
AKT Pathway
66%
Synergistic Effect
50%
Older Subjects
33%
Young Subjects
33%
Protein Synthesis
16%
Signaling Pathway
16%
Additive Effect
16%
Placebo
16%
Phosphorylation State
16%
Induced Activation
16%
Skeletal muscle
16%
Constant Rate Infusion
16%
Resistance Exercise
16%
Multiple Injections
16%
Exercise-induced
16%
Human Skeletal muscle
16%
Hematopoiesis
16%
Differential Activation
16%
Acute Exercise
16%
Interaction Effect
16%
Vastus Lateralis
16%
Leg Extension
16%
Hematopoietic Tissue
16%
Positive Regulator
16%
Mouse Skeletal muscle
16%
Crossover Design
16%
No Additives
16%
Nonhematopoietic
16%
Erythropoietin Receptor
16%
Epoetin Alfa
16%
EPO Receptor
16%
L-phenylalanine
16%
Acute Bout
16%
AKT Serine/threonine Kinase
16%
Medicine and Dentistry
Erythropoietin
100%
Skeletal Muscle
100%
Protein Synthesis
100%
Protein Kinase B
62%
Injection
50%
Signal Transduction
37%
Resistance Training
25%
Placebo
12%
Receptor
12%
Cytokine
12%
Infusion
12%
Hematopoiesis
12%
Phenylalanine
12%
Protein Serine Threonine Kinase
12%
Recombinant Erythropoietin
12%
Hematopoietic Tissue
12%
Erythropoietin Receptor
12%
Albendazole
12%
phosphorylation
12%
Biochemistry, Genetics and Molecular Biology
Protein Biosynthesis
100%
Skeletal Muscle
100%
Erythropoietin
100%
Protein Kinase B
62%
Signal Transduction
37%
Resistance Training
25%
Cytokine
12%
Normal Human
12%
Phosphotransferase
12%
Kinase
12%
Hematopoiesis
12%
Darbepoetin Alfa
12%
Erythropoietin Receptor
12%
Albendazole
12%
Serine
12%
Phenylalanine
12%
Threonine
12%
phosphorylation
12%
Pharmacology, Toxicology and Pharmaceutical Science
Muscle Protein
100%
Erythropoietin
100%
Protein Kinase B
71%
Placebo
14%
Receptor
14%
Normal Human
14%
Cytokine
14%
Phenylalanine
14%
Protein Serine Threonine Kinase
14%
Recombinant Erythropoietin
14%
Erythropoietin Receptor
14%
Albendazole
14%
Immunology and Microbiology
Erythropoietin Receptor
12%
Neuroscience
Erythropoietin Receptor
12%