Sort by
Keyphrases
Aberrant Differentiation
50%
Available Energy
50%
Biochemical Assay
50%
Cell Function
50%
Contractile Proteins
50%
Energy Content
50%
Energy Deficiency
50%
Energy Deficit
100%
Energy Sources
50%
Enzyme Activity
50%
Experimental Methodology
50%
Fibroblasts
50%
Genotype
50%
Glucose Homeostasis
50%
Glucose Uptake
50%
Glycogen
50%
Growth Defects
100%
Growth Energy
100%
High-throughput Proteomics
50%
Histological Preparation
50%
Impaired Growth
50%
Insulin Independence
50%
Knock-in Mouse Model
50%
Mitochondrial Mass
50%
Mitochondrial Proteins
50%
Morphometric Measurements
50%
Muscle Strength
50%
Muscle Weakness
100%
Myoblast
50%
Myofiber
100%
Oxidative Phosphorylation (OXPHOS)
50%
Pancreatic Cells
50%
Passive Movement
50%
Phenotypic Characterization
50%
Phosphocreatine
50%
Physical Fitness Test
50%
Positron Emission Tomography
50%
Proteomic Analysis
50%
RPS6
50%
S6 Kinase 1 (S6K1)
50%
S6 Phosphorylation
100%
S6 Ribosomal Protein
100%
Serine Residues
50%
Total muscle Mass
50%
Triacylglycerol
50%
Biochemistry, Genetics and Molecular Biology
Adenosine Triphosphate
33%
Alanine
33%
Cell Function
33%
Contractile Protein
33%
Deficiency
33%
Enzyme
33%
Fibroblast
33%
Genotyping
33%
Glucose Homeostasis
33%
Glucose Transport
33%
Kinase
33%
Mitochondrial Protein
33%
Muscle Strength
33%
Oxidative Phosphorylation
33%
Phosphotransferase
33%
Physical Performance
33%
Positron Emission Tomography
33%
Proteomics
33%
Ribosomal Protein S6
100%
Serine
33%
Triglyceride
33%
Pharmacology, Toxicology and Pharmaceutical Science
Adenosine Triphosphate
50%
Alanine
50%
Contractile Protein
50%
Creatine Phosphate
50%
Mitochondrial Protein
50%
Muscle Weakness
100%
Protein S6
100%
S6 Kinase
50%
Serine
50%
Triacylglycerol
50%
Weakness
50%
Immunology and Microbiology
Alanine
20%
Cell Function
20%
Contractile Protein
20%
Fibroblast
20%
Glucose Homeostasis
20%
Glucose Transport
20%
Insulin
20%
Muscle
100%
Muscle Strength
20%
Myoblast
20%
Oxidative Phosphorylation
20%
Physical Performance
20%
Positron Emission Tomography
20%
Proteomics
20%
Serine
20%