Keyphrases
C57BL
100%
Metabolic Syndrome
100%
Skeletal muscle
100%
High-fat Feeding
100%
Metabolic Adaptation
100%
Morphological Adaptation
100%
Insulin Resistance
66%
Oxidative Phosphorylation (OXPHOS)
66%
Palm Oil
66%
Fiber Type
66%
Protein Analysis
66%
Mitochondria-associated Membranes
66%
Energy Metabolism
33%
Type 2 Diabetes Mellitus (T2DM)
33%
Biological Processes
33%
Human Studies
33%
Low Fat
33%
Mitochondrial Function
33%
Transcriptomics
33%
Immune Function
33%
Lipids
33%
Early Onset
33%
High-fat Diet
33%
Expression Level
33%
Saturated Fatty Acids
33%
Phosphatidylcholine
33%
Membrane Phospholipids
33%
Metabolism Function
33%
Lipogenesis
33%
Molecular Events
33%
Phospholipids
33%
Oxidative Capacity
33%
Lipid Analysis
33%
Morphogenesis
33%
Altered Expression
33%
Myosin Heavy Chain (MyHC)
33%
Slow Fiber
33%
Positive Adaptation
33%
Phospholipids/phosphatidylethanolamine
33%
Intervention Strategies
33%
Effective Intervention
33%
Oxidative Fibers
33%
Biochemistry, Genetics and Molecular Biology
Skeletal Muscle
100%
Insulin Resistance
100%
Lipid
100%
Mitochondrial Membrane
100%
C57BL 6 Mouse
100%
Oxidative Phosphorylation
100%
Morphology
100%
Outer Mitochondrial Membrane
100%
Phospholipid
100%
Prevalence
50%
Downregulation
50%
Saturated Fatty Acid
50%
Biological Phenomena and Functions Concerning the Entire Organism
50%
Morphogenesis
50%
Heavy Meromyosin
50%
Transcriptomics
50%
Lipogenesis
50%
Human Study
50%
Energy Metabolism
50%
Protein Characterization
50%
Phosphatidylethanolamine
50%
Lecithin
50%
INIS
feeding
100%
muscles
100%
mice
100%
fats
100%
oxidation
100%
mitochondria
75%
proteins
75%
levels
50%
fibers
50%
genes
50%
phosphorylation
50%
membranes
50%
diet
50%
insulin
50%
lipids
50%
phospholipids
50%
palm oil
50%
increasing
25%
humans
25%
animals
25%
interventions
25%
fatty acids
25%
energy
25%
metabolism
25%
chains
25%
capacity
25%
morphogenesis
25%
saturation
25%
myosin
25%
phosphatidylcholine
25%
iodine complexes
25%
vanadium complexes
25%
Neuroscience
Skeletal Muscle
100%
Phospholipid
100%
Oxidative Phosphorylation
100%
Mitochondrial Membrane
100%
Energy Metabolism
50%
Transcriptomics
50%
Lecithin
50%
Myosin Heavy Chain
50%
Mitochondrial Function
50%
Phosphatidylethanolamine
50%
Morphogenesis
50%
Saturated Fatty Acid
50%
Immunology and Microbiology
Protein Characterization
50%