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Glucose ingestion during endurance training does not alter adaptation
Thorbjorn C A Akerstrom
, Christian P Fischer
, Peter Plomgaard
, Carsten Thomsen
,
Gerrit van Hall
,
Bente Klarlund Pedersen
Afdeling for Klinisk Biokemi DIA
28
Citationer (Scopus)
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Keyphrases
Glucose Consumption
100%
Adaptation
100%
Endurance Training
100%
During Exercise
75%
Glycogen Content
75%
Acyl-CoA Dehydrogenase
50%
Dehydrogenase Activity
50%
Citrate Synthase
50%
Placebo
25%
Attenuation
25%
Fatty Acid Uptake
25%
Metabolic Enzymes
25%
Skeletal muscle
25%
Knee Extensors
25%
Male Subjects
25%
Palmitate
25%
Fatty Acid Oxidation
25%
Training Adaptation
25%
Performance Enhancement
25%
Glucose Solution
25%
Endurance Performance
25%
Substrate Metabolism
25%
Disappearance Rate
25%
Peak Power
25%
Transport Proteins
25%
Oxidation Rate
25%
Time to Fatigue
25%
Mitochondrial Enzyme Activity
25%
One Leg
25%
Biochemistry, Genetics and Molecular Biology
Ingestion
100%
Endurance Training
100%
Glucose
100%
Glycogen
75%
Citrate Synthase
50%
Oxidoreductase
50%
Dehydrogenase
50%
Enzyme
25%
Enzyme Activity
25%
Mitochondrial Respiration
25%
Fatty Acid Transport
25%
Skeletal Muscle
25%
Beta Oxidation
25%
Translocator Protein
25%
Palmitic Acid
25%
Neuroscience
Glucose
100%
Glycogen
75%
Citrate Synthase
50%
Placebo
25%
Metabolic Pathway
25%
Enzyme Activity
25%
Palmitic Acid
25%
Skeletal Muscle
25%
Mitochondrial Enzyme
25%
Fatty Acid Transport
25%
Translocator Protein
25%
Enzymes
25%