Effect of low glycogen on carbohydrate and energy metabolism in human muscle during exercise.
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M. Spencer | A. Katz | A Katz | Z Yan | M K Spencer | Z. Yan
[1] J. Bergstrom. MUSCLE ELECTROLYTES IN MAN DETERMINED BY NEUTRON ACTIVATION ANALYSIS ON NEEDLE BIOPSY SPECIMENS , 1962 .
[2] P. Lemon,et al. Effect of initial muscle glycogen levels on protein catabolism during exercise. , 1980, Journal of applied physiology: respiratory, environmental and exercise physiology.
[3] J. Lowenstein,et al. Replenishment of citric acid cycle intermediates by the purine nucleotide cycle in rat skeletal muscle. , 1981, Current topics in cellular regulation.
[4] K. Sahlin,et al. Regulation of glucose utilization in human skeletal muscle during moderate dynamic exercise. , 1991, The American journal of physiology.
[5] A. Sollevi,et al. ATP breakdown products in human skeletal muscle during prolonged exercise to exhaustion. , 1987, Clinical physiology.
[6] P. J. Randle,et al. Regulation of glucose uptake by muscles. 10. Effects of alloxan-diabetes, starvation, hypophysectomy and adrenalectomy, and of fatty acids, ketone bodies and pyruvate, on the glycerol output and concentrations of free fatty acids, long-chain fatty acyl-coenzyme A, glycerol phosphate and citrate-cycl , 1964, The Biochemical journal.
[7] E Hultman,et al. Muscle glycogen during prolonged severe exercise. , 1967, Acta physiologica Scandinavica.
[8] E Hultman,et al. Diet, muscle glycogen and physical performance. , 1967, Acta physiologica Scandinavica.
[9] N. Ruderman,et al. Glucose Metabolism in Rat Skeletal Muscle at Rest: Effect of Starvation, Diabetes, Ketone Bodies and Free Fatty Acids , 1974, Diabetes.
[10] J. Lowenstein,et al. Ammonia production in muscle and other tissues: the purine nucleotide cycle. , 1972, Physiological reviews.
[11] K. Sahlin,et al. Tricarboxylic acid cycle intermediates in human muscle during prolonged exercise. , 1990, The American journal of physiology.