Skeletal muscle function and its relation to exercise tolerance in chronic heart failure.
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P. Ponikowski | P. Poole‐Wilson | S. Anker | T. Chua | K. Webb-Peploe | D. Harrington | A. Coats | A. Coats | P. Poole-Wilson | Katharine Webb-Peploe | K. Webb-Peploe
[1] S. Anker,et al. Insulin resistance in chronic heart failure: relation to severity and etiology of heart failure. , 1997, Journal of the American College of Cardiology.
[2] P. Ponikowski,et al. Hormonal changes and catabolic/anabolic imbalance in chronic heart failure and their importance for cardiac cachexia. , 1997, Circulation.
[3] P. Poole‐Wilson,et al. Elevated soluble CD14 receptors and altered cytokines in chronic heart failure. , 1997, The American journal of cardiology.
[4] P. Ponikowski,et al. Wasting as independent risk factor for mortality in chronic heart failure , 1997, The Lancet.
[5] J. Lexell,et al. Aging of human muscle: structure, function and adaptability , 1995, Scandinavian journal of medicine & science in sports.
[6] J. Wilson,et al. Exercise Intolerance in Heart Failure: Importance of Skeletal Muscle , 1995 .
[7] J. Permert,et al. Nutritional assessment and muscle energy metabolism in severe chronic congestive heart failure--effects of long-term dietary supplementation. , 1994, European heart journal.
[8] I. Godsland,et al. Insulin resistance in chronic heart failure. , 1994, European heart journal.
[9] P. Poole‐Wilson,et al. Symptoms and quality of life in heart failure: the muscle hypothesis. , 1994, British heart journal.
[10] B. Massie,et al. Skeletal muscle size: relationship to muscle function in heart failure. , 1993, Journal of applied physiology.
[11] D. Mancini,et al. Effect of balloon mitral valvuloplasty on exercise capacity, ventilation and skeletal muscle oxygenation. , 1993, Journal of the American College of Cardiology.
[12] H. Drexler,et al. Alterations of Skeletal Muscle in Chronic Heart Failure , 1992, Circulation.
[13] H. Drexler. Skeletal muscle failure in heart failure. , 1992, Circulation.
[14] R. Lenkinski,et al. Contribution of Skeletal Muscle Atrophy to Exercise Intolerance and Altered Muscle Metabolism in Heart Failure , 1992, Circulation.
[15] M. Weiner,et al. Impaired skeletal muscle function in patients with congestive heart failure. Relationship to systemic exercise performance. , 1991, The Journal of clinical investigation.
[16] F. Cobb,et al. Altered Skeletal Muscle Metabolic Response to Exercise in Chronic Heart Failure: Relation to Skeletal Muscle Aerobic Enzyme Activity , 1991, Circulation.
[17] P. Poole‐Wilson,et al. Direct measurement of skeletal muscle fatigue in patients with chronic heart failure. , 1991, British heart journal.
[18] H. Fillit,et al. Elevated circulating levels of tumor necrosis factor in severe chronic heart failure. , 1990, The New England journal of medicine.
[19] F. Cobb,et al. Skeletal muscle biochemistry and histology in ambulatory patients with long-term heart failure. , 1990, Circulation.
[20] E. Coyle,et al. Contribution of intrinsic skeletal muscle changes to 31P NMR skeletal muscle metabolic abnormalities in patients with chronic heart failure. , 1989, Circulation.
[21] C. G. Blomqvist,et al. Effects of active muscle mass size on cardiopulmonary responses to exercise in congestive heart failure. , 1989, Journal of the American College of Cardiology.
[22] P. Poole‐Wilson,et al. Abnormalities of skeletal muscle in patients with chronic heart failure. , 1988, International journal of cardiology.
[23] M. Pierpont,et al. Cardiac and skeletal muscle abnormalities in cardiomyopathy: comparison of patients with ventricular tachycardia or congestive heart failure. , 1987, Journal of the American College of Cardiology.
[24] S. Frostick,et al. 31P nuclear magnetic resonance evidence of abnormal skeletal muscle metabolism in patients with congestive heart failure. , 1987, The American journal of cardiology.
[25] M. Pollock,et al. Effect of age and training on aerobic capacity and body composition of master athletes. , 1987, Journal of applied physiology.
[26] B. Massie,et al. Correlates and prognostic implication of exercise capacity in chronic congestive heart failure. , 1985, The American journal of cardiology.
[27] B. Chance,et al. Evaluation of energy metabolism in skeletal muscle of patients with heart failure with gated phosphorus-31 nuclear magnetic resonance. , 1985, Circulation.
[28] Jack L. Martin,et al. Impaired skeletal muscle nutritive flow during exercise in patients with congestive heart failure: role of cardiac pump dysfunction as determined by the effect of dobutamine. , 1984, The American journal of cardiology.
[29] K. Weber,et al. Effect of hydralazine on perfusion and metabolism in the leg during upright bicycle exercise in patients with heart failure. , 1983, Circulation.
[30] R. Coleman,et al. Determinants of variable exercise performance among patients with severe left ventricular dysfunction. , 1983, The American journal of cardiology.
[31] E. Sonnenblick,et al. Failure of dobutamine to increase exercise capacity despite hemodynamic improvement in severe chronic heart failure. , 1983, The American journal of cardiology.
[32] T. Levine,et al. Lack of correlation between exercise capacity and indexes of resting left ventricular performance in heart failure. , 1981, The American journal of cardiology.
[33] L. Larsson,et al. Muscle strength and speed of movement in relation to age and muscle morphology. , 1979, Journal of applied physiology: respiratory, environmental and exercise physiology.
[34] D. Denison,et al. The measurement of metabolic gas exchange and minute volume by mass spectrometry alone. , 1979, Respiration physiology.
[35] A Thorstensson,et al. Fatiguability and fibre composition of human skeletal muscle. , 1976, Acta physiologica Scandinavica.