Keyphrases
Oxidative Stress
100%
Exercise Training
100%
Hydroxylation
100%
Training Stress
100%
Antipyrine
100%
Ortho
37%
Maastricht
25%
Netherlands
12%
Maastricht University
12%
Human Biology
12%
Functional Capacity
12%
Blood Flow
12%
Between-group
12%
Plasma Parameters
12%
Training Program
12%
Fitness Centers
12%
Training Group
12%
Exercise-induced
12%
Liver
12%
Maximal Oxygen Uptake
12%
During Exercise
12%
Hydroxyl Radical
12%
Antioxidant System
12%
Cytochrome P450 (CYP450)
12%
Nutrition Research
12%
Human nutrition
12%
Workload Capacity
12%
Reaction Products
12%
Exercise-induced Oxidative Stress
12%
Hydroxylated
12%
Monooxygenase
12%
Toxicology Research
12%
Bast
12%
Thiobarbituric Acid Reactive Substances
12%
Radical Reactions
12%
Cycling Test
12%
Biology Study
12%
Human Toxicology
12%
INIS
exercise
100%
oxidation
100%
hydroxylation
100%
antipyrine
100%
humans
50%
women
25%
capacity
25%
levels
12%
liver
12%
control
12%
nutrition
12%
netherlands
12%
oxygen
12%
uptake
12%
universities
12%
biology
12%
defense
12%
men
12%
blood flow
12%
plasma
12%
breakdown
12%
antioxidants
12%
oxygenases
12%
hydroxyl radicals
12%
free radicals
12%
cytochromes
12%
Medicine and Dentistry
Oxidative Stress
100%
Exercise
100%
Phenazone
100%
Hydroxylation
100%
Maximal Oxygen Uptake
12%
Functional Status
12%
Hydroxyl Radical
12%
Blood Flow
12%
Cytochrome P450
12%
Antioxidant
12%
Phloem
12%
Free Radical
12%
Unspecific Monooxygenase
12%
Thiobarbituric Acid
12%
Reactive Species
12%
Nutrition
12%
Toxicology
12%
Nursing and Health Professions
Phenazone
100%
Hydroxylation
100%
Blood Level
12%
Blood Flow
12%
Health Center
12%
Antioxidant
12%
Functional Status
12%
Cytochrome P450
12%
Free Radical
12%
Hydroxyl Radical
12%
Unspecific Monooxygenase
12%
Thiobarbituric Acid
12%
Pharmacology, Toxicology and Pharmaceutical Science
Phenazone
100%
Antioxidant
12%
Functional Status
12%
Hydroxyl Radical
12%
Free Radical
12%
Cytochrome P450
12%
Unspecific Monooxygenase
12%
Thiobarbituric Acid
12%
Toxicology
12%