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The molecular bases of training adaptation
Vernon G. Coffey
, John A. Hawley
*
*
Corresponding author for this work
Research output
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Contribution to journal
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Review article
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Research
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peer-review
540
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Citations (Scopus)
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Medicine and Dentistry
Skeletal Muscle
100%
Genetics
80%
Diseases
20%
Resistance Training
20%
Contractile Protein
20%
Mitochondrial Biogenesis
20%
Functional Status
20%
Amino Acid
20%
Athletes
20%
Muscle Growth
20%
Athletic Performance
20%
Endurance Training
20%
Signaling Mechanism
20%
Homeostasis
20%
Signaling Protein
20%
Morphology
20%
Early Response Gene
20%
Etiology
20%
Biochemistry, Genetics and Molecular Biology
Skeletal Muscle
100%
Genetics
60%
Resistance Training
20%
Homeostasis
20%
Endurance Training
20%
Contractile Protein
20%
Mitochondrial Biogenesis
20%
Signaling Protein
20%
Metabolic Pathway
20%
Amino Acid
20%
Athletic Performance
20%
Muscle Growth
20%
Signaling Mechanism
20%
Early Response Gene
20%
Functional Status
20%
Genetic Mechanism
20%
Morphology
20%
Molecular Mechanism
20%
Neuroscience
Skeletal Muscle
100%
Genetics
80%
Mitochondrial Biogenesis
20%
Metabolic Pathway
20%
Muscle Growth
20%
Amino Acid
20%
Signaling Mechanism
20%
Early Response Gene
20%
Contractile Protein
20%
Keyphrases
Training Methodology
20%