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MeSH Review

Liquid Ventilation

 
 
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Disease relevance of Liquid Ventilation

 

High impact information on Liquid Ventilation

 

Chemical compound and disease context of Liquid Ventilation

 

Biological context of Liquid Ventilation

 

Anatomical context of Liquid Ventilation

 

Associations of Liquid Ventilation with chemical compounds

 

Gene context of Liquid Ventilation

  • Partial liquid ventilation does not affect BALF TNF-, MIP-2, CINC-1 concentrations, or CD11b cell surface expression, but does increase macrophage proportion among BALF cells in the acute phase of rat LPS-induced lung injury [20].
  • RESULTS: Large animal studies have clarified the mechanisms of gas exchange during HFO, identified approaches to setting mean airway pressure based on lung mechanics, and identified a potentially better approach to applying partial liquid ventilation [21].
  • During partial liquid ventilation our model indicates that the combination of uniform PA with a large vertical gradient in PPL leads to a vertical PTP gradient and therefore relative over-inflation of the top of the lung [22].
  • Liquid ventilation in an infant with pulmonary alveolar proteinosis [3].
  • This method is expected to assist in the prediction of physical properties of PFC liquids with acceptable accuracy, such that PFC production and selection from currently available liquids can be optimized for each liquid ventilation application [23].
 

Analytical, diagnostic and therapeutic context of Liquid Ventilation

References

  1. Prospective, randomized, controlled pilot study of partial liquid ventilation in adult acute respiratory distress syndrome. Hirschl, R.B., Croce, M., Gore, D., Wiedemann, H., Davis, K., Zwischenberger, J., Bartlett, R.H. Am. J. Respir. Crit. Care Med. (2002) [Pubmed]
  2. Effects of partial liquid ventilation on lung injury in a model of acute respiratory failure: a histologic and morphometric analysis. Quintel, M., Heine, M., Hirschl, R.B., Tillmanns, R., Wessendorf, V. Crit. Care Med. (1998) [Pubmed]
  3. Liquid ventilation in an infant with pulmonary alveolar proteinosis. Tsai, W.C., Lewis, D., Nasr, S.Z., Hirschl, R.B. Pediatr. Pulmonol. (1998) [Pubmed]
  4. Partial liquid ventilation with perflubron in premature infants with severe respiratory distress syndrome. The LiquiVent Study Group. Leach, C.L., Greenspan, J.S., Rubenstein, S.D., Shaffer, T.H., Wolfson, M.R., Jackson, J.C., DeLemos, R., Fuhrman, B.P. N. Engl. J. Med. (1996) [Pubmed]
  5. Pulmonary administration of perfluorodecaline- gentamicin and perfluorodecaline- vancomycin emulsions. Franz, A.R., Röhlke, W., Franke, R.P., Ebsen, M., Pohlandt, F., Hummler, H.D. Am. J. Respir. Crit. Care Med. (2001) [Pubmed]
  6. Persistent improvement of gas exchange and lung mechanics by aerosolized perfluorocarbon. Kandler, M.A., von der Hardt, K., Schoof, E., Dötsch, J., Rascher, W. Am. J. Respir. Crit. Care Med. (2001) [Pubmed]
  7. Neonates with congenital diaphragmatic hernia: radiographic findings during partial liquid ventilation. Garver, K.A., Kazerooni, E.A., Hirschl, R.B., DiPietro, M.A. Radiology. (1996) [Pubmed]
  8. Comparative effects of vaporized perfluorohexane and partial liquid ventilation in oleic acid-induced lung injury. de Abreu, M.G., Quelhas, A.D., Spieth, P., Bräuer, G., Knels, L., Kasper, M., Pino, A.V., Bleyl, J.U., Hübler, M., Bozza, F., Salluh, J., Kuhlisch, E., Giannella-Neto, A., Koch, T. Anesthesiology (2006) [Pubmed]
  9. Treatment of pulmonary hypertension and hypoxia due to oleic acid induced lung injury with intratracheal prostaglandin E1 during partial liquid ventilation. Nakazawa, K., Uchida, T., Matsuzawa, Y., Yokoyama, K., Makita, K., Amaha, K. Anesthesiology (1998) [Pubmed]
  10. Effects of combined high-dose partial liquid ventilation and almitrine on pulmonary gas exchange and hemodynamics in an animal model of acute lung injury. Sommerer, A., Dembinski, R., Max, M., Kuhlen, R., Kaisers, U., Rossaint, R. Intensive care medicine. (2001) [Pubmed]
  11. Effect of perfluorocarbon (perfluorooctyl bromide) vapor on tidal volume measurement during partial liquid ventilation. Davies, M.W., Dunster, K.R. Crit. Care Med. (2002) [Pubmed]
  12. Prolonged partial liquid ventilation using conventional and high-frequency ventilatory techniques: gas exchange and lung pathology in an animal model of respiratory distress syndrome. Smith, K.M., Mrozek, J.D., Simonton, S.C., Bing, D.R., Meyers, P.A., Connett, J.E., Mammel, M.C. Crit. Care Med. (1997) [Pubmed]
  13. Pulmonary administration of prostacyclin (PGI2) during partial liquid ventilation in an oleic acid-induced lung injury: inhalation of aerosol or intratracheal instillation? Nakazawa, K., Yokoyama, K., Matsuzawa, Y., Makita, K., Amaha, K. Intensive care medicine. (2001) [Pubmed]
  14. High-frequency oscillation versus conventional ventilation following surfactant administration and partial liquid ventilation. Mrozek, J.D., Bing, D.R., Meyers, P.A., Connett, J.E., Mammel, M.C. Pediatr. Pulmonol. (1998) [Pubmed]
  15. The pulmonary and systemic distribution and elimination of perflubron from adult patients treated with partial liquid ventilation. Reickert, C., Pranikoff, T., Overbeck, M., Kazerooni, E., Massey, K., Bartlett, R., Hirschl, R. Chest (2001) [Pubmed]
  16. End-expiratory lung volumes and density distribution patterns during partial liquid ventilation in healthy and oleic acid-injured sheep: a computed tomography study. Luecke, T., Meinhardt, J.P., Herrmann, P., Klemm, S., Weiss, A., Weisser, G., Hirschl, R.B., Quintel, M. Crit. Care Med. (2003) [Pubmed]
  17. Fluorocarbon ventilation: maximal expiratory flows and CO2 elimination. Koen, P.A., Wolfson, M.R., Shaffer, T.H. Pediatr. Res. (1988) [Pubmed]
  18. Effects of partial liquid ventilation with perfluorodecalin in the juvenile rabbit lung after saline injury. Al-Rahmani, A., Awad, K., Miller, T.F., Wolfson, M.R., Shaffer, T.H. Crit. Care Med. (2000) [Pubmed]
  19. Thirty years of clinical trials in acute respiratory distress syndrome. McIntyre, R.C., Pulido, E.J., Bensard, D.D., Shames, B.D., Abraham, E. Crit. Care Med. (2000) [Pubmed]
  20. Partial liquid ventilation does not affect BALF TNF-, MIP-2, CINC-1 concentrations, or CD11b cell surface expression, but does increase macrophage proportion among BALF cells in the acute phase of rat LPS-induced lung injury. Komori, E., Shoga, K., Aoe, M., Sawada, S., Ichiba, S., Simizu, N. Acta Med. Okayama (2003) [Pubmed]
  21. High-frequency oscillatory ventilation: what large-animal studies have taught us! Kacmarek, R.M., Malhotra, A. Crit. Care Med. (2005) [Pubmed]
  22. Gravitational effects on volume distribution in a model of partial and total liquid ventilation. Tarczy-Hornoch, P., Hildebrandt, J., Jackson, J.C. Respiration physiology. (2000) [Pubmed]
  23. Quantitative structure-activity relationships of perfluorinated hetero-hydrocarbons as potential respiratory media. Application to oxygen solubility, partition coefficient, viscosity, vapor pressure, and density. Gabriel, J.L., Miller, T.F., Wolfson, M.R., Shaffer, T.H. ASAIO journal (American Society for Artificial Internal Organs : 1992) (1996) [Pubmed]
  24. Use of liquid ventilation with perflubron during extracorporeal membrane oxygenation: chest radiographic appearances. Gross, G.W., Greenspan, J.S., Fox, W.W., Rubenstein, S.D., Wolfson, M.R., Shaffer, T.H. Radiology. (1995) [Pubmed]
  25. Partial liquid ventilation enhances surfactant phospholipid production. Steinhorn, D.M., Leach, C.L., Fuhrman, B.P., Holm, B.A. Crit. Care Med. (1996) [Pubmed]
  26. Partial liquid ventilation with perfluorocarbon in the treatment of rats with lethal pneumococcal pneumonia. Dickson, E.W., Heard, S.O., Chu, B., Fraire, A., Brueggemann, A.B., Doern, G.V. Anesthesiology (1998) [Pubmed]
  27. Perfluorochemical (PFC) combinations for acute lung injury: an in vitro and in vivo study in juvenile rabbits. Jeng, M.J., Yang, S.S., Wolfson, M.R., Shaffer, T.H. Pediatr. Res. (2003) [Pubmed]
 
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