Descargar

Ventilación mecánica no invasiva (página 2)

Enviado por CARLOS EYZAGUIRRE


Partes: 1, 2

30. Jardin Farcot JC, Boisante L, Curien N, Margairaz A, Bourdarias J. Influence of positive end-expiratory pressure on left ventricular performance.

N Engl J Med 1981; 304: 387-92.

31. Sladen A, Laver MB, Pontppidan H. Pulmonary complications and water retention in prolonged mechanical ventilation. N Eng J Med 1968; 279: 449-53.

32. Manquez JM, Douglas ME, Downs JB. Renal function and cardiovascular responses during positive airway pressure. Anesthesiology 1979; 50: 393-8.

33. Andrivet P, Adnot S, Sanker S. Hormonal interactions and renal function during mechanical ventilation and ANF infusion in humans. J Appl Physiol 1991; 70: 287-92.

34. Rossi A, Appendini L, Roca J. Physiological aspects of positive pressure non invasive ventilation. Eur Respir Mon 2001; 16: 1-10.

35. Pérez de Llano L, Golpe R, Ortiz Piquer M, Veres Racamonde A, Vázquez Caruncho M, Caballero Muinelos O, et al. Short-term and long-term effects of nasal intermitttent positive pressure ventilation in patients with obesity- hypoventilation syndrome. Chest 2005; 128: 587-94.

36. Petrof BJ, Legare M, Goldberg P, Milic-Emili J, Gottfried SB. Continuous positive airway pressure

reduces work of breathing and dyspnea during weaning from mechanical ventilation in severe chronic obstructive pulmonary disease.

Am Rev Respir Dis 1990; 141: 281-9.

37. Calzia E, Lindner K, Witt S, Schirmer U, Lange H, Stens R, et al. Pressure-time product and work of breathing during biphasic continuous positive airway pressure and assisted spontaneous breathing. Am J Respir Crit Care Med 1994; 150: 904-10.

38. Fitting JW. Respiratory muscles during ventilatory support. Eur Respir J 1994; 7: 2223-5.

39. Pankow W, Hijjeh N, Schüttler F, Penzel T, Becker HF, Peter JH, et al. Influence of non-invasive positive pressure ventilation on inspiratory muscle activity in obese subjects. Eur Respir J 1997; 10: 2847-52.

40. Renston JP, DiMarco AF, Supinski GS. Respiratory muscle rest using nasal BiPAP ventilation in patients with stable severe COPD. Chest 1994; 105: 1053-60.

41. Schonhofer B, Wallstein S, Wiese C, Kohler D. Noninvasive mechanical ventilation improves endurance performance in patients with chronic respiratory failure due to thoracic restriction. Chest 2001; 119: 1371-8.

42. Elliot MW, Mulvey DA, Moxham J, Green M, Branthwaite MA. Domiciliary nocturnal nasal intermittent positive pressure ventilation: mechanisms underlying changes in arterial blood gas tensions. Eur Respir J 1991; 1: 1044-52.

43. de Lucas-Ramos P, de Miguel-Díez J, Santacruz-Siminiani A, González-Moro JMR, Buendía-García

MJ, Izquierdo-Alonso JL. Benefits at 1 year of nocturnal intermittent positive pressure ventilation in patients with obesity-hypoventilation síndrome. Respir Med 2004; 98: 961-7.

44. Krachman SL, Quaranta AJ, Berger TJ, Criner GJ. Effects of noninvasive positive pressure ventilation on gas exchange and sleep in COPD patients. Chest 1997; 112: 623-8.

45. Barbe F, Quera-Salva MA, de Lattre J, Gagdos

Ph, Agusti AGN. Long-term effects of nasal intermittent positive-pressure ventilation on pulmonary function and sep architecture in patients with neuromuscular diseases. Chest 1996; 110:1179-83.

46. Schönhoffer B, Köhler D. Effect of non-invasive mechanical ventilation on sleep and nocturnal ventilation in patients with chronic respiratory failure. Thorax 2001; 55-308-13.

 

 

Autor:

Dr Eyzaguirre Ojeda Carlos Dario

 

Partes: 1, 2
 Página anterior Volver al principio del trabajoPágina siguiente