Search Results - Ruby, B.
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Impact of hypoxic exercise recovery on skeletal muscle glycogen and gene expression
Slivka, D., Dumke, C., Hailes, W., Ruby, B.Published in High Altitude Medicine & Biology (2021)“…Ruby, B.…”
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Impact of extreme exercise at high altitude on oxidative stress in humans
Quindry, J., Dumke, C., Slivka, D., Ruby, B.Published in The Journal of Physiology (2015)“…Ruby, B.…”
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Acute hypoxia and exercise-induced blood oxidative stress
McGinnis, G. R., Kliszczewiscz, B., Barberio, M., Ballmann, C., Peters, B., Slivka, D. R., Dumke, C. L., Cuddy, J. S., Hailes, W. S., Ruby, B. C., Quindry, J.Published in International Journal of Sport Nutrition and Exercise Metabolism (2014)“…Ruby, B. C.…”
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Effect of local cold application on glycogen recovery
Tucker, T. J., Slivka, D. R., Cuddy, J. S., Hailes, W. S., Ruby, B. CPublished in The Journal of Sports Medicine and Physical Fitness (2012)“…Ruby, B. C…”
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Substrate use and biochemical response to a 3,211-km bicycle tour in trained cyclists
Slivka, D. R., Dumke, C. L., Hailes, W. S., Cuddy, J. S., Ruby, B. C.Published in European Journal of Applied Physiology (2012)“…Ruby, B. C.…”
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Effects of 21 days of intensified training on markers of overtraining
Slivka, D. R., Hailes, W. S., Cuddy, J. S., Ruby, B. C.Published in The Journal of Strength and Conditioning Research (2010)“…Ruby, B. C.…”
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Effects of deep water and treadmill running on oxygen uptake and energy expenditure in seasonally trained cross country runners (Deep water and treadmill running at 60 and 80% VO2max were compared on a number of physiological variables. Effects of deep water and treadmill running on oxygen uptake and energy expenditure in)
DeMaere, J., Ruby, B. C., Swan, J.Published in Medicine & Science in Sports & Exercise (1997)“…Ruby, B. C.…”
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sport physiology
training
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carbohydrate
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high-altitude training
hypoxia
load
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biochemistry
endurance
intermittent
interval method
long-term endurance
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muscle physiology
nutrition
recovery
strength endurance
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athlete
blood
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