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Journal Abstract Search


411 related items for PubMed ID: 14605531

  • 1. Effect of different inspiratory rise time and cycling off criteria during pressure support ventilation in patients recovering from acute lung injury.
    Chiumello D, Pelosi P, Taccone P, Slutsky A, Gattinoni L.
    Crit Care Med; 2003 Nov; 31(11):2604-10. PubMed ID: 14605531
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  • 3. Effects of sustained inflation and postinflation positive end-expiratory pressure in acute respiratory distress syndrome: focusing on pulmonary and extrapulmonary forms.
    Tugrul S, Akinci O, Ozcan PE, Ince S, Esen F, Telci L, Akpir K, Cakar N.
    Crit Care Med; 2003 Mar; 31(3):738-44. PubMed ID: 12626977
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  • 4. Comparisons of predictive performance of breathing pattern variability measured during T-piece, automatic tube compensation, and pressure support ventilation for weaning intensive care unit patients from mechanical ventilation.
    Bien MY, Shui Lin Y, Shih CH, Yang YL, Lin HW, Bai KJ, Wang JH, Ru Kou Y.
    Crit Care Med; 2011 Oct; 39(10):2253-62. PubMed ID: 21666447
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  • 5. Physiologic effects of noninvasive ventilation during acute lung injury.
    L'Her E, Deye N, Lellouche F, Taille S, Demoule A, Fraticelli A, Mancebo J, Brochard L.
    Am J Respir Crit Care Med; 2005 Nov 01; 172(9):1112-8. PubMed ID: 16081548
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  • 6. Work of breathing during lung-protective ventilation in patients with acute lung injury and acute respiratory distress syndrome: a comparison between volume and pressure-regulated breathing modes.
    Kallet RH, Campbell AR, Dicker RA, Katz JA, Mackersie RC.
    Respir Care; 2005 Dec 01; 50(12):1623-31. PubMed ID: 16318643
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  • 8. Evaluation of auto-regulated inspiratory support during rebreathing and acute lung injury in pigs.
    Desmettre TJ, Chambrin MC, Mangalaboyi J, Pigot A, Chopin C.
    Respir Care; 2005 Aug 01; 50(8):1050-61. PubMed ID: 16225710
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  • 9. Influence of pressure- and flow-triggered synchronous intermittent mandatory ventilation on inspiratory muscle work.
    Sassoon CS, Del Rosario N, Fei R, Rheeman CH, Gruer SE, Mahutte CK.
    Crit Care Med; 1994 Dec 01; 22(12):1933-41. PubMed ID: 7988129
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  • 10. Effect of pressure support on end-expiratory lung volume and lung diffusion for carbon monoxide.
    Pinto Da Costa N, Di Marco F, Lyazidi A, Carteaux G, Sarni M, Brochard L.
    Crit Care Med; 2011 Oct 01; 39(10):2283-9. PubMed ID: 21666442
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  • 11. Low stretch ventilation strategy in acute respiratory distress syndrome: eight years of clinical experience in a single center.
    Page B, Vieillard-Baron A, Beauchet A, Aegerter P, Prin S, Jardin F.
    Crit Care Med; 2003 Mar 01; 31(3):765-9. PubMed ID: 12626981
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  • 12. Tidal volume delivery during high-frequency oscillatory ventilation in adults with acute respiratory distress syndrome.
    Hager DN, Fessler HE, Kaczka DW, Shanholtz CB, Fuld MK, Simon BA, Brower RG.
    Crit Care Med; 2007 Jun 01; 35(6):1522-9. PubMed ID: 17440422
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  • 13. Mechanical effects of airway humidification devices in difficult to wean patients.
    Girault C, Breton L, Richard JC, Tamion F, Vandelet P, Aboab J, Leroy J, Bonmarchand G.
    Crit Care Med; 2003 May 01; 31(5):1306-11. PubMed ID: 12771595
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  • 14. Lethal systemic capillary leak syndrome associated with severe ventilator-induced lung injury: an experimental study.
    Mandava S, Kolobow T, Vitale G, Foti G, Aprigliano M, Jones M, Müller E.
    Crit Care Med; 2003 Mar 01; 31(3):885-92. PubMed ID: 12627001
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  • 15. Effects of cyclic opening and closing at low- and high-volume ventilation on bronchoalveolar lavage cytokines.
    Chu EK, Whitehead T, Slutsky AS.
    Crit Care Med; 2004 Jan 01; 32(1):168-74. PubMed ID: 14707576
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  • 16. Evaluation of inspiratory rise time and inspiration termination criteria in new-generation mechanical ventilators: a lung model study.
    Chatmongkolchart S, Williams P, Hess DR, Kacmarek RM.
    Respir Care; 2001 Jul 01; 46(7):666-77. PubMed ID: 11403698
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  • 17. A high positive end-expiratory pressure, low tidal volume ventilatory strategy improves outcome in persistent acute respiratory distress syndrome: a randomized, controlled trial.
    Villar J, Kacmarek RM, Pérez-Méndez L, Aguirre-Jaime A.
    Crit Care Med; 2006 May 01; 34(5):1311-8. PubMed ID: 16557151
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  • 18. Pulmonary gas distribution during ventilation with different inspiratory flow patterns in experimental lung injury -- a computed tomography study.
    Roth H, Luecke T, Deventer B, Joachim A, Herrmann P, Quintel M.
    Acta Anaesthesiol Scand; 2004 Aug 01; 48(7):851-61. PubMed ID: 15242429
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  • 19. Influence of neurally adjusted ventilatory assist and positive end-expiratory pressure on breathing pattern in rabbits with acute lung injury.
    Allo JC, Beck JC, Brander L, Brunet F, Slutsky AS, Sinderby CA.
    Crit Care Med; 2006 Dec 01; 34(12):2997-3004. PubMed ID: 16957635
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  • 20. Spontaneous breathing during lung-protective ventilation in an experimental acute lung injury model: high transpulmonary pressure associated with strong spontaneous breathing effort may worsen lung injury.
    Yoshida T, Uchiyama A, Matsuura N, Mashimo T, Fujino Y.
    Crit Care Med; 2012 May 01; 40(5):1578-85. PubMed ID: 22430241
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