Influence of exercise intensity and duration on biochemical adaptations in skeletal muscle.
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Summary
The influence of intensity and daily duration of exercise on cytochrome c concentration in the three muscle fiber types was assessed in rats that were treadmill trained for 8 wk (5 days/wk) by 1 of 19 protocols.
- Type
- article
- Published
- 1982-10-01
- Cited by
- 460
- References
- 20
- OpenAlex
- https://openalex.org/W1933701962
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38922451
Keywords
Intensity (physics), Treadmill, Skeletal muscle, Fiber, Muscle fibre
References
- Cardiovascular response to treadmill exercise in untrained rats.
- Mitochondrial enzymatic adaptation of skeletal muscle to endurance training.
- Cytochrome c turnover in rat skeletal muscles.
- Determination of metabolic and heart rate responses of rats to treadmill exercise.
- EMG of slow and fast ankle extensors of cat during posture, locomotion, and jumping.
- Skeletal muscle cytochrome c and myoglobin, endurance, and frequency of training.
- Biochemical adaptations to endurance exercise in muscle.
- Time course of changes in human skeletal muscle succinate dehydrogenase and cytochrome oxidase activities and maximal oxygen uptake with physical activity and inactivity.
- Motor Unit Properties and Selective Involvement In Movement
- Influence of muscle use on amino acid metabolism.
- The nature of the training response; peripheral and central adaptations of one-legged exercise.
- Biochemical adaptation of mitochondria, muscle, and whole-animal respiration to endurance training.
- Exercise bioenergetics following sprint training.
- Ammonia and IMP in different skeletal muscle fibers after exercise in rats.
- Skeletal muscle enzyme alterations after sprint and endurance training.
- Glycogen, lactate, and alanine changes in muscle fiber types during graded exercise.
- Forces produced by medial gastrocnemius and soleus muscles during locomotion in freely moving cats.
- Muscle fiber involvement during training of different intensities and durations.
- Biochemical adaptations in skeletal muscle of trained thyroidectomized rats.
- Time course adaptations in cardiac and skeletal muscle to different running programs.
Cited by
- Effect of exercise on physiological age-related change at mouse neuromuscular junctions.
- Muscle damage and repair in voluntarily running mice: strain and muscle differences
- Rigorous exercise training increases superoxide dismutase activity in ventricular myocardium.
- Gestion des interférences liées au développement des qualités énergétiques et neuromusculaires
- Vasomotor responses of soleus feed arteries from sedentary and exercise-trained rats.
- Angiogenic growth factor expression in rat skeletal muscle in response to exercise training.
- Nutrition and fuel utilization in the athletic horse.
- Metabolic Adaptations to Short-term High-Intensity Interval Training: A Little Pain for a Lot of Gain?
- Correlation of Cortisol with Non-Invasive Physiological Measures in Response to Exercise
- Effects of aging, TNF-α, and exercise training on angiotensin II-induced vasoconstriction of rat skeletal muscle arterioles.
- Physical activity-induced remodeling of vasculature in skeletal muscle: role in treatment of type 2 diabetes.
- Cytochrome c mRNA in skeletal muscles of immobilized limbs.
- The metabolic responses of high intensity intermittent exercise in healthy untrained adults
- Exercise and ovarian steroid hormones: their effects on mitochondrial respiration.
- Heritability of treadmill running endurance in rats.
- Ventilatory threshold and peak VO2 responses in prepubescent children following a high intensity training program
- Prédiction de la performance en natation par les mesures d'activité du Système Nerveux Autonome : modélisation mathématique
- Effects of Exercise and Elevated Fatty Acid Availability on Muscle Lipid Metabolism and Insulin Sensitivity.
- GDNF content and NMJ plasticity in slow and fast twitch myofibers follows recruitment in exercise
- The Effects of a Continuous Infusion of Hexarelin on Pulsatile Growth Hormone Release, Growth Axis and Galanin Gene Expression and on the Response of the Growth Axis to Growth Hormone-Releasing Hormone
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