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Revista Mexicana de Anestesiología

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ISSN 0484-7903 (Print)
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2015, Number S1

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Rev Mex Anest 2015; 38 (S1)

General anesthesia-functional residual capacity

Crosara D
Full text How to cite this article

Language: Spanish
References: 16
Page: 20-25
PDF size: 742.03 Kb.


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REFERENCES

  1. Amato MBP, et al. Effect of a protective ventilation strategy on mortality in the acute respiratory distress syndrome. N Engl J Med. 1998;338:347-354.

  2. Bikker IG, van Bommel J, Miranda DR, Bakker J, Gommers D. End-expiratory lung volume during mechanical ventilation: a comparison with reference values and the effect of positive end-expiratory pressure in intensive care unit patients with different lung conditions. Crit Care. 2008;12:R145.

  3. Borges J, Okamoto V, Matos G, Caramez M, et al. Reversibility of lung collapse and hipoxemia in early acute distress syndrome. Am J Respir Crit Care Med. 2006;174:268-278.

  4. Brower RG, Lanken PN, MacIntyre N, et al. Higher versus lower positive end-expiratory pressure in patients with the acute respiratory distress syndrome. N Eng J Med. 2004;351:327-336.

  5. Chiumello D, Cressoni M, Chierichetti M, Tallarini F, Botticelli M, Berto V, et al. Nitrogen washout/washin, helium dilution and computed tomography in the assessment of end expiratory lung volume. Crit Care. 2008;12:R150.

  6. Duggan M, Kavanagh BP. Pulmonary atelectasias: a pathogenic perioperative entity. Anesthesiology. 2005;102:838-854.

  7. Gattinoni L, Caironi P. Refining ventilatory treatment for acute lung injury and acute respiratory distress syndrome. JAMA. 2008;299:691-693.

  8. Malhotra A. Low tidal volume ventilation in the acute respiratory distress syndrome. N Eng J Med. 2007;357:1113-1120.

  9. Meade MO, Cook DJ, Guyatt GH, et al. Ventilation strategy using low tidal volumes, recruitment maneuvers, and high positive end-expiratory pressure for acute lung injury and acute respiratory distress syndrome: a randomized controlled trial. JAMA. 2008;299:637-645.

  10. Medoff, et al. Use of recruitment maneuvers and high positive end-expiratory pressure in a patient with acute respiratory distress syndrome. Crit Care Med. 2000;28:1210-1216.

  11. Petrucci N, Iacovelli W. Estrategia de ventilación pulmonar protectora para el síndrome de dificultad respiratoria aguda. Biblioteca Cochrane Plus. 2008, n*2. Disponible en: http://www.update-software.com.

  12. Ranieri M, et al. Effect of mechanical ventilation on inflamatory mediators in patients with acute respiratory distress syndrome. JAMA. 1999;282:54-78.

  13. Ranieri M, Zhang H, Mascia L, Aubin M, Lin C, Mullen J, et al. Pressure-time curve predicts minimally injurious ventilatory strategy in an isolated rat lung model. Anesthesiology. 2000;93:1320-1328.

  14. Suarez-Sipmann F, Bohm S, Tusman G, Pesch T, et al. Use of dynamic compliance for open lung positive end-expiratory pressure titration in an experimental study. Crit Care Med. 2007;35:214-221.

  15. The Acute Respiratory Distress Syndrome Network. Ventilation with lower tidal volumen as compared with traditional tidal volumen for acute lung injury and the acute respiratory distress syndrome. N Eng J Med. 2000;342:1301-1308.

  16. Villar J, Kacmarek R, Pérez-Méndez L, Aguirre-Jaime A, for the ARIES Network. A high positive end-expiratory pressure, low tidal volume ventilatory strategy improves outcome in persistent acute respiratory distress syndrome: a randomized, controlled trial. Crit Care Med. 2006;34:1311-1318.




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Rev Mex Anest. 2015;38