Metabolic rehabilitation in pulmonology
About the Authors
L. M. KlyachkinRussian Federation
A. M. Schegolkov
Russian Federation
References
1. Айсанов З.Р., Кокосов А.Н., Овчаренко С.И. и др. Хронические обструктивные болезни легких. Федеральная программа. Рус. мед. журн. 2001; 1: 9-33.
2. Гембицкий Е.В., Клячкин Л.М., Кириллов М.М. Патология внутренних органов при травме. М.: Медицина; 1994.
3. Global initiative for chronic obstructive lung diseases. National Institute of Health, National Heart, Lung and Blood Institute. Publ. N2701, apr. 2001.
4. Клячкин Л.М., Щегольков A.M. Реабилитация больных с заболеваниями внутренних органов. М.: Медицина; 2000.
5. Ландышева И.В., Ландышев Ю.С. Хроническое легочное сердце при хроническом обструктивном бронхите (патогенез, диагностика, клиника и лечение). Благовещенск; 2001.
6. Сандлер Ю.Г. Частота и структура трофической недостаточности у раненых и методы коррекции: Автореф. дис канд. мед. наук. М.; 2002.
7. Щегольков А.М ., Клячкин Л.М., Марочкина Е.Б. и др. Метаболическая реабилитация больных с сочетанной кардиореспираторной патологией. В кн.: Российский нац. конгресс "Человек и лекарство". М.; 2003. 526.
8. Чучалин. А.Г. Хронические обструктивные болезни легких. М.: ЗАО изд-во "БИНОМ"; 1998.
9. Amoroso P., Wilson S.R., Moxham J. et al. Acute effects of inhaled salbutamol on the metabolic rate of normal subjects. Thorax 1993; 48: 886-889.
10. Ascanazi J., Nordenstrom J., Rosenbaum S. et al. Nutrition for the patient with respiratory failure: glucose versus fat. Anesthesiology 1981; 54: 373-377.
11. Ascanazi J., Weissman C., LaSala A. et al. Effect of protein intake on ventilatory drive. Ibid. 1984; 60: 106-110.
12. Baarends E.M., Schols A.M.W.J., Akermans M.A., Wouters E.F.M. Decreased mechanical efficiency in clinical stable patients with COPD. Thorax 1997; 52: 981-986.
13. Baarends E.M., Schols A.M.W .J., Van Marken Lichtenbelt W.D., Wouters E.F.M. Analysis of body water compartments in relation to tissue depletion in clinically stable patients with COPD. Am. J. Clin. Nutr. 1997; 65: 88-94.
14. Brown S.E., Casciari R.J., Light R.W. Arterial oxygen saturation during meals in patients with severe COPD. South Med. J. 1983; 76: 194-198.
15. Brown S.E., McCartney N., Sale D. Positive adaptation to weightlifting training in the elderly. J. Appl. Physiol. 1990; 69: 1725-1733.
16. Burdet L., deMuralt B., Schütz Y. et al. Administration of growth hormone to underweight patients with COPD. Am. J. Respir. Crit. Care Med. 1997; 156: 1800-1806.
17. Creutzberg E., Schols A.M.W.J., Wesseling G.J., Wouters E.F.M. Acute effects of inhaled salbutamol on lung function and energy metabolism in COPD patients and normal subjects. Eur. Respir. J. 1994; 7 (suppl. 18): 466s.
18. Charette S., McEvoy L., Pyka G. et al. Muscle hypertrophy response to resistance training in older men. J. Appl. Physiol. 1991; 70: 1912-1916.
19. Donahoe V., Rogers R.M., Wilson D.O., Pennock B.E. Oxygen consumption of the respiratory muscles in normal and malnourished patients with chronic obstructive lung disease. Am. Rev. Respir. Dis. 1989; 94: 1260-1263.
20. Donahoe V., Mancino J., Costatino J. et al. The effect of aggressive support regimen on body composition in patients with severe COPD and weight loss. Am. J. Respir. Crit. Care Med. 1994; 149: A313.
21. Decramer М., Donner C.F., Schols A.M .W J. Rehabilitation. Eur. Respir. Monogr. 1998; 3: Management of chronic obstructive pulmonary disease: 215-234.
22. Decramer М., Gosselink R., Troosters T. et al. Muscle weakness is related to utilization of health care resources in COPD patients. Eur. Respir. J. 1997; 10: 417-423.
23. Decramer М ., Laquet L.M ., Fagard R., Rogiers P. Corticosteroids contribute to muscle weakness in chronic airflow obstruction. Am. J. Respir. Crit. Care Med. 1994; 150; 11-16.
24. Dorlac G.R., Westerman J.H. Effect of prolonged low carbohydrate diet on exercise performance in COPD. Ibid. 149: A599.
25. Engelen M.P.R.J., Schols A.M.W.J., Baken W.C. et al. Nutritional depletion in relation to respiratory and peripheral skeletal muscle function in outpatients with COPD. Eur. Respir. J. 1994; 7: 1793-1797.
26. Elia M. Home enteral nutrition: some general aspects and a comparison between the USA and Britain. Nutrition 1994; 10: 1-9.
27. Efthimiou J., Mounsey P.J., Benson D.N. et al. Effect of a carbohydrate-rich versus fat-rich loads on gas-exchange and walking performance inpatients with COPD. Thorax 1992; 47: 451-456.
28. Efthimiou J., Fleming C., Gomes C., Spiro S.G. The effect of supplementary oral nutrition in poorly nourished patients with COPD. Am. Rev. Respir. Dis. 1988; 137: 1075-1082.
29. Fowler J., Godlee R. Emphysema of the lungs. London; 1898.
30. Fiaccadory E., Canale Del S., Vitali P. et al. Skeletal muscles energetic acid-base equilibrium and lacte metabolism in patients with severe hypercapnia and hypoxemia. Chest 1987; 92: 883-887.
31. Fuenzalida Ch.E., Petty T.L., Jones P.M.L. et al. The immune response to short-term nutritional intervention in advanced chronic obstructive lung disease. Am. Rev. Respir. Dis. 1990; 142: 49-56.
32. Fong Y., Moldawer V., Morano M. et al. Cachectin TNF or IL-1 a induces cachexia with restribution of body proteins. Am. J. Physiol. 1989; 235: R659-R665.
33. Gertz I., Hedenstierna G., Hellers G., Wahren J. Muscle metabolism in patients with chronic obstructive lung disease and acute respiratory failure. Clin. Sci. Mol. Med. 1977; 52: 395-403.
34. Godoy D.L., Donahoe M., Calhoun W.J. et al. Elevated TNF-a production by peripheral blood monocites of weight losing COPD patients. Am. J. Respir. Crit. Care Med. 1996; 153: 633-637.
35. Goldstein S., Askanazi J., Weissman C. et al. Energy expenditure in patients with COPD. Chest 1987; 91: 222-224.
36. Green J.H., Muers M.F. Comparison between basal metabolic rate and diet-induced thermogenesis in different types of chronic obstructive pulmonary disease. Clin. Sci. (Colch) 1992; 83: 109-116.
37. Heymsfield S.B., Erbland M., Casper K. et al. Enternal nutritional support. Metabolic cardiovascular and pulmonary interrelations. Clin. Chest Med. 1986; 7: 41-67.
38. Hugly O., Schütz Y., Fitting J.W. The cost of breathing in stable chronic obstructive pulmonary disease. Clin. Sci. (Colch). 1995; 89: 625-632.
39. Hofford J.M., Milakofski L., Vogel W.H. et al. The nutritional status in advanced emphysema associated with chronic obstructive bronchitis. Am. Rev. Respir. Dis. 1990; 141: 902-908.
40. Hunter A.M.B., Carey M.A., Larsh H.W. The nutritional status of patients with COPD. Ibid. 1981; 124: 376-381.
41. Jacobsson P., Jorfeldt R., Henricsson J. Metabolic enzyme activity in the quadriceps femoris in patients with severe chronic obstructive pulmonary disease. Am. J. Respir. Crit. Care Med. 1995; 151: 374-377.
42. Jacobsson P., Jorfeldt L. Long term oxygen therapy may improve skeletal muscle metabolism in advanced COPD patients with chronic hypoxaemia. Respir. Med. 1995; 89: 471-476.
43. Jones D.P. Cellular energetics and biochemistry of hypoxia. In: Haddad G.G., Lister G., eds. Tissue oxygen deprivation. Lung biology in health and disease. New York: Marcel Dekker Inc.; 1996. 25-50.
44. Kinney J.M. Forms of malnutrition in stressed and unstressed patients. Clin. Chest Med. 1986; 7: 19-28.
45. Kutsuzava T., Shioya S., Kurita D. et al. 31PNMR study of skeletal muscle metabolism in patients with chronic respiratory impairment. Am. Rev. Respir. Dis. 1992; 151: 1019-1024.
46. Lanigan C., Moxham J., Pennock B.E. Effect of airflow limitation on resting oxygen consumption. Thorax 1990; 45: 388-390.
47. Mannix E.T., Boska M.D., Galassetti P. et al. Modulation of ATP production by oxygen in obstructive lung disease as assessed by 31P-MRS. J. Appl. Physiol. 1995; 78: 2218-2227.
48. Maltais F.M., Simard M., Simard C. et al. Oxidative capacity of the skeletal muscle and lactic acid kinetics during exercise in normal subjects and patients with COPD. Am. J. Respir. Crit. Care Med. 1996; 153: 288-293.
49. O'Donnell D.E., Webb K.A. Exertional breathlessness in patients with chronic airflow limitation. Am. Rev. Respir. Dis. 1993; 148: 1351-1357.
50. Palange P., Galassetti P., Mannix E.T. et al. Oxygen effect on 02-deficit and V02-kinetics during exercise in obstructive lung disease. J. Appl. Physiol. 1995; 78: 2228-2234.
51. Pouw E.M. Elevated monophosphate levels in resting muscle of patients with stable COPD. Am. J. Resoir. Crit. Care Med. 1998; 157; 453-457.
52. Pouw E.M., Ten Velde G.P.M, Croonen B. et al. Early nonselective readmission for COPD is associated with weight loss. Eur. Respir. J. 1997; 10 (suppl. 25): 373s.
53. Patessio A. Exercise training in lung diseases. Eur. Respir. Monogr. 2000; 5 (13): Pulmonary rehabilitation: 90-98.
54. Pareira M.D., Conrad E.J., Hicks W., Elman R. Therapeutic nutrition with tube feeding. J.A.M.A. 1954; 156: 810.
55. Park R.H.R., Allison M.C., Lang J. et al. Randomized comparison of percutaneous endoscopic gastrostomy and nasogastric tube feeding in patients with persisting neurological dysphagia. Br. Med. J. 1992; 304: 1406-1409.
56. Ponsky J.L., Gauderer M .W .L., Stellato T.A., Aszodi A. Percutaneous approaches to enteral alimentation. Am. J. Surg. 1985; 149: 102-105.
57. Pape G.S., Friedman M., Underwood D.E., Clemmons D.R. The effect of growth hormone on weight gain and pulmonary function in patients with COPD. Chest 1991; 99; 1495-1500.
58. Payen J.F., Wuyam B., Levy P. et al. Muscular metabolism during oxygen supplementation in patients with chronic hypoxemia. Am. Rev. Respir. Dis. 1993; 147: 592-598.
59. Russel D., Prendergast P.J., Darby P.L. et al. A comparison between muscle function and body composition in anorexia nervosa the effect of refeeding. Am. J. Clin. Nutr. 1983; 38: 229-237.
60. Schols A.M.W.J., Buurman W.A., Staal-van den Brekel A.J. et al. Evidence for a relation between metabolic derangements and increased levels of inflammatory mediators in a subgroup of patients with COPD. Thorax 1996; 51: 819-824.
61. Schols A.M.W.J., Mostert R., Cobben N. et al. Transcutaneous oxygen saturation and carbon dioxide tension during meals in patients with COPD. Chest 1991; 100: 1287-1292.
62. Schols A.M .W .J., Soeters P.B., Dingemans A.N.C. et al. Prevalence and characteristics of nutritional depletion in patients with COPD eligible for pulmonary rehabilitation. Am. Rev. Respir. Dis. 1993; 147: 1151-1156.
63. Schols A.M .W .J., Soeters P.B., Dingemans A.M.C. et al. Nutritional depletion in relation to respiratory and peripheral skeletal muscle function in outpatients with COPD. Eur. Respir. J. 1994; 7: 1793-1797.
64. Schols A.M.W.J., Soeters P.B., Mostert R. Energy balance in COPD. Am. Rev. Respir. Dis. 1991; 143: 1248-1252.
65. Schols A.M.W.J., Soeters P.B., Mostert R. et al. Physiological effects of nutritional support and anabolic steroids in COPD patients: a placebo controlled randomized trial. Am. J. Respir. Crit. Care Med. 1995; 152: 1268-1274.
66. Schols A.M .W.J., Slangen J., Volovich L., Wouters E.F.M. Weight loss is a reversible factor in the prognosis of COPD. Ibid. 1998; 157: 1791-1797.
67. Schols A.M.W.J., Wouters E.F.M., Soeters P.B. et al. Body composition by bioelectrical impedance analysis compared Schols A M W J to deuterium dilution and skin fold antropometry in patients with COPD. Am. J. Clin Nutr. 1991; 53: 421-423.
68. Smith Y, Wolkowe N., Colacone A., Kreisman H. Coordination of eating, drinking and breathing in adults. Chest 1989; 96: 578-582.
69. Sridhar M.K. Why do patients with emphysema loss weight. Lancet 1995; 345: 1190-1191.
70. Tracey R.J., Lowry S.F., Beutler B. et al. Cahectin/tumor necrosis factor induces cachecsia, anemia and inflammation. J. Exp. Med. 1988; 167: 1211-1227.
71. Taylor C.A., Larson D.E., Ballard D.J. et al. Predictors of outcome after percutaneous endoscopic gastrostomy: a communitybased study. Mayo Clin. Proc. 1992; 67: 1042-1049.
72. Vermeeren M.A.P., Schols A.M.W.J., Wouters E.F.M. Effects of an acute exacerbation on nutritional and metabolic profile of patients with COPD. Eur. Respir. J. 1997; 10: 2264-2269.
73. Vitacca M., Clim E., Martin J.G. et al. Acute exacerbation in patients with COPD: predictors of need for mechanical ventilation. Ibid. 1996; 9: 1487-1493.
74. Wouters E.F.T., Schols A.M.W.J. Nutritional support in chronic respiratory diseases. Eur. Respir. Monogr. 2000; 5 (13): Pulmonary rehabilitation: 111-132.
75. Wilson D.O., Rogers R.M., Wright E., Anthonisen N.R. Body weight in chronic obstructive pulmonary diseases. Am. Rev. Respir. Dis. 1989; 139: 1435-1438.
76. Wilson D.O., Donahoe M ., Rogers R.M ., Pennock B.E. Metabolic rate and weight loss in COPD. J. Parent. Ent. Nutr. 1990;14:7-11.
77. Wilson S.R., Amoroso P., Moxham J., Ponte J. Modification of the thermogenic effect of acutely inhaled salbutamol by chronic inhalation in normal subjects. Thorax 1993; 48: 886-889.
78. ZuWallack R.L., Patel C., Reardon J.Z. et al. Predictors of improvement in 12-minute walking distance following a six-week outpatients pulmonary rehabilitation program. Chest 1991; 99: 805-808.
Review
For citations:
Klyachkin L.M., Schegolkov A.M. Metabolic rehabilitation in pulmonology. PULMONOLOGIYA. 2003;(4):7-14. (In Russ.)