Metrika

  • citati u SCIndeksu: 0
  • citati u CrossRef-u:0
  • citati u Google Scholaru:[]
  • posete u poslednjih 30 dana:13
  • preuzimanja u poslednjih 30 dana:4

Sadržaj

članak: 1 od 1  
2014, vol. 9, br. 1, str. 71-82
Protektivna mehanička ventilacija kod pacijenata sa ili bez povrede pluća
aUniversity of Genoa, IRCCS San Martino - IST, Genoa, Italy + Ramathibodi Hospital, Mahidol University, Bangkok, Thailand
bUniversity of Naples 'Federico II', Italy
cHospital Universitario Dr. Negrin, Las Palmas de Gran Canaria, Spain + University of Santiago de Compostela, Santiago de Compostela, Spain
dUniversity of Genoa, IRCCS San Martino - IST, Genoa, Italy

e-adresappelosi@hotmail.com
Ključne reči: asistirana ventilacija; Akutni Respiratorni Distres Sindrom; transpulmonarni pritisak; Positivni End Ekspiratorni Pritisak; Protektivna ventilacija; Respiratorni monitoring
Sažetak
Smrtnost od Sindroma Akutnog Respiratornog Distresa (ARDS) je još uvek visoka i kreće se od 27 do 45% prema Berlinskoj definiciji. Čak i kod hirurških pacijenata bez povrede pluća, postoperativne plućne komplikacije (PPC) su česte. Kod ARDS-a, protektivna ventilacija sa niskim 'tidal' volumenom od 6 ml/kg PBW i višim nivoima pozitivnog end-ekspiratornog pritiska (PEEP) su široko prihvaćeni kao rutinska praksa. Kod pacijenata bez ARDS-a, podvrgnutih mehaničkoj ventilaciji, protektivna ventilacija sa niskim 'tidal' volumenom od 6 ml/kg PBW i niskim do srednjim PEEPom su postali nov izazov suportivne nege posebno u jedinicama intenzivne nege i kod perioperativnih pacijenata. Respiratorni monitorig je od velike pomoći za podešavanje optimalne ventilacije kako bi se prevenirala povrede usled asistirane ventilacije i na vreme detektovale postoperativne plućne komplikacije u perioperativnom periodu. Nekoliko rezultata je usvojeno kako bi se smanjio rizik od ARDS, PPC i VALI (ventilator associated lung injury). Vreme je za primenu bazične fiziologije respiratorne funkcije i na dokazima zasnovane prakse kako bi se unapredili ishodi ARDS-a i PPC.
Reference
*** (2000) Ventilation with Lower Tidal Volumes as Compared with Traditional Tidal Volumes for Acute Lung Injury and the Acute Respiratory Distress Syndrome. New England Journal of Medicine, 342(18): 1301-1308
Akoumianaki, E., Maggiore, S.M., Valenza, F., Bellani, G., Jubran, A., Loring, S.H., Pelosi, P., Talmor, D., Grasso, S., Chiumello, D., Guérin, C., Patroniti, N., Ranieri, V. M. (2014) The Application of Esophageal Pressure Measurement in Patients with Respiratory Failure. American Journal of Respiratory and Critical Care Medicine, 189(5): 520-531
Amato, M.B., Barbas, C.S., Medeiros, D.M., Magaldi, R.B., Schettino, G.P., Lorenzi-Filho, G., Kairalla, R.A., Deheinzelin, D., Munoz, C., Oliveira, R., Takagaki, T.Y., Carvalho, C.R. (1998) Effect of a protective-ventilation strategy on mortality in the acute respiratory distress syndrome. New England journal of medicine, 338(6): 347-54
Arozullah, A.M., Khuri, S.F., Henderson, W.G., Daley, J. (2001) Development and validation of a multifactorial risk index for predicting postoperative pneumonia after major noncardiac surgery. Annals of internal medicine, 135(10): 847-57
Arozullah, A.M., Daley, J., Henderson, W.G., Khuri, S.F. (2000) Multifactorial Risk Index for Predicting Postoperative Respiratory Failure in Men After Major Noncardiac Surgery. Annals of Surgery, 232(2): 242-253
Bai, K., Spicer, A.P., Mascarenhas, M.M., Yu, L., Ochoa, C.D., Garg, H.G., Quinn, D.A. (2005) The Role of Hyaluronan Synthase 3 in Ventilator-induced Lung Injury. American Journal of Respiratory and Critical Care Medicine, 172(1): 92-98
Ball, L., Sutherasan, Y., Pelosi, P. (2013) Monitoring respiration: What the clinician needs to know. Best Practice and Research Clinical Anaesthesiology, 27(2): 209-223
Barbas, C.S.V., Isola, A.M., Caser, E.B. (2014) What is the future of acute respiratory distress syndrome after the Berlin definition?. Current opinion in critical care, 20(1): 10-6
Beitler, J.R., Shaefi, S., Montesi, S.B., Devlin, A., Loring, S.H., Talmor, D., Malhotra, A. (2014) Prone positioning reduces mortality from acute respiratory distress syndrome in the low tidal volume era: a meta-analysis. Intensive Care Medicine, 40(3): 332-341
Bem, R.A., van Woensel, J.B.M., Bos, A.P., Koski, A., Farnand, A.W., Domachowske, J.B., Rosenberg, H.F., Martin, T.R., Matute-Bello, G. (2008) Mechanical ventilation enhances lung inflammation and caspase activity in a model of mouse pneumovirus infection. AJP: Lung Cellular and Molecular Physiology, 296(1): L46-L56
Bouhemad, B., Brisson, H., Le-Guen, M., Arbelot, C., Lu, Q., Rouby, J. (2011) Bedside Ultrasound Assessment of Positive End-Expiratory Pressure-induced Lung Recruitment. American Journal of Respiratory and Critical Care Medicine, 183(3): 341-347
Brochard, L., Roudot-Thoraval, F., Roupie, E., Delclaux, C., Chastre, J., Fernandez-Mondéjar, E., CLÉMENTI, E., Mancebo, J., Factor, P., Matamis, D., Ranieri, M. (1998) Tidal Volume Reduction for Prevention of Ventilator-induced Lung Injury in Acute Respiratory Distress Syndrome. American Journal of Respiratory and Critical Care Medicine, 158(6): 1831-1838
Brower, R.G., Shanholtz, C.B., Fessler, H.E., Shade, D.M., White, P., Wiener, C.M., Teeter, J.G., Dodd-o, J.M., Almog, Y., Piantadosi, S. (1999) Prospective, randomized, controlled clinical trial comparing traditional versus reduced tidal volume ventilation in acute respiratory distress syndrome patients. Critical care medicine, 27(8): 1492-8
Brower, R.G., Lanken, P.N., MacIntyre, N., Matthay, M.A., Morris, A., Ancukiewicz, M., Schoenfeld, D., Thompson, B. (2004) Higher versus lower positive end-expiratory pressures in patients with the acute respiratory distress syndrome. New England journal of medicine, 351(4): 327-36
Brueckmann, B., Villa-Uribe, J.L., Bateman, B.T., Grosse-Sundrup, M., Hess, D.R., Schlett, C.L., Eikermann, M. (2013) Development and validation of a score for prediction of postoperative respiratory complications. Anesthesiology, 118(6): 1276-85
Canet, J., Hardman, J., Sabaté, S., Langeron, O., de Abreu, M.G., Gallart, L., Belda, J., Markstaller, K., Pelosi, P., Mazo, V. (2011) PERISCOPE study: predicting post-operative pulmonary complications in Europe. European Journal of Anaesthesiology, 28(6): 459-461
Canet, J., Gallart, L., Gomar, C., Paluzie, G., Vallès, J., Castillo, J., Sabaté, S., Mazo, V., Briones, Z., Sanchis, J. (2010) Prediction of postoperative pulmonary complications in a population-based surgical cohort. Anesthesiology, 113(6): 1338-50
Chapman, K.E. (2005) Cyclic mechanical strain increases reactive oxygen species production in pulmonary epithelial cells. AJP: Lung Cellular and Molecular Physiology, 289(5): L834-L841
Cheng, Y., Chan, K., Chien, C., Sun, W., Lin, C. (2006) Oxidative stress during 1-lung ventilation. Journal of Thoracic and Cardiovascular Surgery, 132(3): 513-518
Chimenti, L., Luque, T., Bonsignore, M.R., Ramírez, J., Navajas, D., Farré, R. (2012) Pre-treatment with mesenchymal stem cells reduces ventilator-induced lung injury. European respiratory journal, 40(4): 939-48
Corradi, F., Ball, L., Brusasco, C., Riccio, A.M., Baroffio, M., Bovio, G., Pelosi, P., Brusasco, V. (2013) Assessment of extravascular lung water by quantitative ultrasound and CT in isolated bovine lung. Respiratory Physiology and Neurobiology, 187(3): 244-249
Corradi, F., Brusasco, C., Pelosi, P. (2014) Chest ultrasound in acute respiratory distress syndrome. Current Opinion in Critical Care, 20(1): 98-103
Cruz, R.S., Rojas, J.I., Nervi, R., Heredia, R., Ciapponi, A. (2013) High versus low positive end-expiratory pressure (PEEP) levels for mechanically ventilated adult patients with acute lung injury and acute respiratory distress syndrome. Cochrane Database of Systematic Reviews, 6:CD009098
Curley, G.F., Hayes, M., Ansari, B., Shaw, G., Ryan, A., Barry, F., O`Brien, T., O`Toole, D., Laffey, J.G. (2012) Mesenchymal stem cells enhance recovery and repair following ventilator-induced lung injury in the rat. Thorax, 67(6): 496-501
Determann, R.M., Royakkers, A., Wolthuis, E.K., i dr. (2010) Ventilation with lower tidal volumes as compared with conventional tidal volumes for patients without acute lung injury: A preventive randomized controlled trial. Crit Care, 14, str. 1-13
Determann, R.M., Wolthuis, E.K., Choi, G., Bresser, P., Bernard, A., Lutter, R., Schultz, M.J. (2007) Lung epithelial injury markers are not influenced by use of lower tidal volumes during elective surgery in patients without preexisting lung injury. AJP: Lung Cellular and Molecular Physiology, 294(2): L344-L350
Force, A.D.T., Ranieri, V.M., Rubenfeld, G.D., et al. (2012) Acute respiratory distress syndrome: the Berlin Definition. JAMA, 307(23): 2526-33
Frank, J.A., Parsons, P.E., Matthay, M.A. (2006) Pathogenetic significance of biological markers of ventilator-associated lung injury in experimental and clinical studies. Chest, 130(6): 1906-14
Futier, E., Constantin, J., Jaber, S. (2013) Protective lung ventilation in operating room: Systematic Review. Minerva anestesiologica, 79(11): 1306-12
Futier, E., Constantin, J., Paugam-Burtz, C., Pascal, J., Eurin, M., Neuschwander, A., Marret, E., Beaussier, M., Gutton, C., Lefrant, J., Allaouchiche, B., Verzilli, D., Leone, M., de Jong, A. (2013) A trial of intraoperative low-tidal-volume ventilation in abdominal surgery. New England journal of medicine, 369(5): 428-37
Gajic, O., Dabbagh, O., Park, P.K., Adesanya, A., Chang, S.Y., Hou, P., Anderson, H., Hoth, J. J., Mikkelsen, M.E., Gentile, N.T., Gong, M.N., Talmor, D., Bajwa, E., Watkins, T.R. (2011) Early Identification of Patients at Risk of Acute Lung Injury. American Journal of Respiratory and Critical Care Medicine, 183(4): 462-470
Gajic, O., Dara, S.I., Mendez, J.L., Adesanya, A.O., Festic, E., Caples, S.M., Rana, R., St, S.J.L., Lymp, J.F., Afessa, B., Hubmayr, R.D. (2004) Ventilator-associated lung injury in patients without acute lung injury at the onset of mechanical ventilation. Critical care medicine, 32(9): 1817-24
Gattinoni, L., Protti, A., Caironi, P., Carlesso, E. (2010) Ventilator-induced lung injury: the anatomical and physiological framework. Critical care medicine, 38(10 Suppl): S539-48
Gattinoni, L., Carlesso, E., Caironi, P. (2012) Stress and strain within the lung. Current opinion in critical care, 18(1): 42-7
Gonzalez-Lopez, A., Astudillo, A., Garcia-Prieto, E., Fernandez-Garcia, M.S., Lopez-Vazquez, A., Batalla-Solis, E., Taboada, F., Fueyo, A., Albaiceta, G.M. (2011) Inflammation and matrix remodeling during repair of ventilator-induced lung injury. AJP: Lung Cellular and Molecular Physiology, 301(4): L500-L509
Grasso, S., Terragni, P., Birocco, A., Urbino, R., del Sorbo, L., Filippini, C., Mascia, L., Pesenti, A., Zangrillo, A., Gattinoni, L., Ranieri, V. (2012) ECMO criteria for influenza A (H1N1)-associated ARDS: role of transpulmonary pressure. Intensive care medicine, 38(3): 395-403
Guérin, C., Reignier, J., Richard, J., Beuret, P., Gacouin, A., Boulain, T., Mercier, E., Badet, M., Mercat, A., Baudin, O., Clavel, M., Chatellier, D., Jaber, S., Rosselli, S. (2013) Prone positioning in severe acute respiratory distress syndrome. New England journal of medicine, 368(23): 2159-68
Halbertsma, F.J.J., Vaneker, M., Scheffer, G.J., van der Hoeven, J.G. (2005) Cytokines and biotrauma in ventilator-induced lung injury: a critical review of the literature. Netherlands journal of medicine, 63(10): 382-92
Held, H.D., Boettcher, S., Hamann, L., Uhlig, S. (2001) Ventilation-induced chemokine and cytokine release is associated with activation of nuclear factor-kappaB and is blocked by steroids. Am J Respir Crit Care Med, 163(3 Pt 1): 711-6
Hemmes, S.N.T., Neto, A.S., Schultz, M.J. (2013) Intraoperative ventilatory strategies to prevent postoperative pulmonary complications. Current Opinion in Anaesthesiology, 26(2): 126-133
Huang, C., Kawamura, T., Peng, X., Tochigi, N., Shigemura, N., Billiar, T.R., Nakao, A., Toyoda, Y. (2011) Hydrogen inhalation reduced epithelial apoptosis in ventilator-induced lung injury via a mechanism involving nuclear factor-kappa B activation. Biochemical and Biophysical Research Communications, 408(2): 253-258
Huang, C., Kawamura, T., Lee, S., Tochigi, N., Shigemura, N., Buchholz, B.M., Kloke, J.D., Billiar, T.R., Toyoda, Y., Nakao, A. (2010) Hydrogen inhalation ameliorates ventilator-induced lung injury. Critical Care, 14(6): R234
Izquierdo-García, J.L., Naz, S., Nin, N., Rojas, Y., Erazo, M., Martínez-Caro, L., García, A., de Paula, M., Fernández-Segoviano, P., Casals, C., Esteban, A., Ruíz-Cabello, J., Barbas, C., Lorente, J.A. (2014) A Metabolomic Approach to the Pathogenesis of Ventilator-induced Lung Injury. Anesthesiology, 120(3): 694-702
Jaecklin, T., Engelberts, D., Otulakowski, G., O`Brodovich, H., Post, M., Kavanagh, B.P. (2011) Lung-derived soluble mediators are pathogenic in ventilator-induced lung injury. AJP: Lung Cellular and Molecular Physiology, 300(4): L648-L658
Jafari, B., Ouyang, B., Li, L., Hales, C.A., Quinn, D.A. (2004) Intracellular glutathione in stretch-induced cytokine release from alveolar type-2 like cells. Respirology, 9(1): 43-53
Jambrik, Z., Gargani, L., Adamicza, Á., Kaszaki, J., Varga, A., Forster, T., Boros, M., Picano, E. (2010) B-Lines Quantify the Lung Water Content: A Lung Ultrasound Versus Lung Gravimetry Study in Acute Lung Injury. Ultrasound in Medicine and Biology, 36(12): 2004-2010
Janz, D.R., Zhao, Z., Koyama, T., May, A.K., Bernard, G.R., Bastarache, J.A., Young, P.P., Ware, L.B. (2013) Longer storage duration of red blood cells is associated with an increased risk of acute lung injury in patients with sepsis. Annals of intensive care, 3(1): 33
Jiang, D., Liang, J., Fan, J., Yu, S., Chen, S., Luo, Y., Prestwich, G.D., Mascarenhas, M.M., Garg, H.G., Quinn, D.A., Homer, R.J., Goldstein, D.R., Bucala, R., Lee, P.J., Medzhitov, R., Noble, P.W. (2005) Regulation of lung injury and repair by Toll-like receptors and hyaluronan. Nature medicine, 11(11): 1173-9
Kawai, T., Akira, S. (2010) The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors. Nature immunology, 11(5): 373-84
Khuri, S.F., Henderson, W.G., de Palma, R.G., Mosca, C., Healey, N.A., Kumbhani, D.J. (2005) Determinants of long-term survival after major surgery and the adverse effect of postoperative complications. Annals of surgery, 242(3): 326-41; discussion 341-3
Koner, O., Celebi, S., Balci, H., Cetin, G., Karaoglu, K., Cakar, N. (2004) Effects of protective and conventional mechanical ventilation on pulmonary function and systemic cytokine release after cardiopulmonary bypass. Intensive care medicine, 30(4): 620-6
Kor, D.J., Warner, D.O., Alsara, A., Fernández-Pérez, E.R., Malinchoc, M., Kashyap, R., Li, G., Gajic, O. (2011) Derivation and diagnostic accuracy of the surgical lung injury prediction model. Anesthesiology, 115(1): 117-28
Korpos, E., Wu, C., Sorokin, L. (2009) Multiple roles of the extracellular matrix in inflammation. Current pharmaceutical design, 15(12): 1349-57
Kuchnicka, K., Maciejewski, D. (2013) Ventilator-associated lung injury. Anaesthesiology intensive therapy, 45(3): 164-70
Kushimoto, S., Endo, T., Yamanouchi, S., Sakamoto, T., Ishikura, H., Kitazawa, Y., Taira, Y., Okuchi, K., Tagami, T., Watanabe, A., Yamaguchi, J., Yoshikawa, K., Sugita, M., Kase, Y., Kanemura, T. (2013) Relationship between extravascular lung water and severity categories of acute respiratory distress syndrome by the Berlin definition. Critical Care, 17(4): R132
Lee, J.M., Bae, W., Lee, Y.J., Cho, Y. (2014) The Efficacy and Safety of Prone Positional Ventilation in Acute Respiratory Distress Syndrome: Updated Study-Level Meta-Analysis of 11 Randomized Controlled Trials. Critical Care Medicine, 35(3): 288-93
Lee, P.C., Helsmoortel, C.M., Cohn, S.M., Fink, M.P. (1990) Are low tidal volumes safe?. Chest, 97(2): 430-4
Liang, Z.D., Yin, X.R., Cai, D.S., Zhou, H., Pei, L. (2013) Autologous transplantation of adipose-derived stromal cells ameliorates ventilator-induced lung injury in rats. Journal of translational medicine, 11: 179
Madri, J.A., Graesser, D. (2000) Cell Migration in the Immune System: the Evolving Inter-Related Roles of Adhesion Molecules and Proteinases. Developmental Immunology, 7(2-4): 103-116
Meade, M.O., Cook, D.J., Guyatt, G.H., Slutsky, A.S., Arabi, Y.M., Cooper, D. J., Davies, A.R., Hand, L.E., Zhou, Q., Thabane, L., Austin, P., Lapinsky, S., Baxter, A., Russell, J., Skrobik, Y. (2008) Ventilation Strategy Using Low Tidal Volumes, Recruitment Maneuvers, and High Positive End-Expiratory Pressure for Acute Lung Injury and Acute Respiratory Distress Syndrome. JAMA, 299(6): 637
Mercat, A., Richard, J.M., Vielle, B., Jaber, S., Osman, D., Diehl, J., Lefrant, J., Prat, G., Richecoeur, J., Nieszkowska, A., Gervais, C., Baudot, J., Bouadma, L., Brochard, L. (2008) Positive End-Expiratory Pressure Setting in Adults With Acute Lung Injury and Acute Respiratory Distress Syndrome. JAMA, 299(6): 646
Mikkelsen, M.E., Shah, C.V., Meyer, N.J., Gaieski, D.F., Lyon, S., Miltiades, A.N., Goyal, M., Fuchs, B.D., Bellamy, S.L., Christie, J.D. (2013) The epidemiology of acute respiratory distress syndrome in patients presenting to the emergency department with severe sepsis. Shock (Augusta, Ga.), 40(5): 375-81
Moriondo, A., Pelosi, P., Passi, A., Viola, M., Marcozzi, C., Severgnini, P., Ottani, V., Quaranta, M., Negrini, D. (2007) Proteoglycan fragmentation and respiratory mechanics in mechanically ventilated healthy rats. Journal of Applied Physiology, 103(3): 747-56
Moriyama, K. (2004) Enhancement of the endotoxin recognition pathway by ventilation with a large tidal volume in rabbits. AJP: Lung Cellular and Molecular Physiology, 286(6): L1114-L1121
Neto, A.S., Cardoso, S.O., Manetta, J.A., Pereira, V.G.M., Espósito, D.C., Pasqualucci, M.de O.P., Damasceno, M.C.T., Schultz, M.J. (2012) Association Between Use of Lung-Protective Ventilation With Lower Tidal Volumes and Clinical Outcomes Among Patients Without Acute Respiratory Distress Syndrome. JAMA, 308(16): 1651
Ngiam, N., Kavanagh, B.P. (2012) Ventilator-induced lung injury: the role of gene activation. Current opinion in critical care, 18(1): 16-22
Oeckler, R.A., Hubmayr, R.D. (2007) Ventilator-associated lung injury: a search for better therapeutic targets. European respiratory journal, 30(6): 1216-26
Oeckler, R.A., Hubmayr, R.D. (2008) Cell wounding and repair in ventilator injured lungs. Respiratory Physiology and Neurobiology, 163(1-3): 44-53
Pearse, R.M., Moreno, R.P., Bauer, P., Pelosi, P., Metnitz, P., Spies, C., Vallet, B., Vincent, J., Hoeft, A., Rhodes, A. (2012) Mortality after surgery in Europe: a 7 day cohort study. Lancet, 380(9847): 1059-65
Pelosi, P., Negrini, D. (2008) Extracellular matrix and mechanical ventilation in healthy lungs: back to baro/volotrauma?. Current opinion in critical care, 14(1): 16-21
Piccinini, A.M., Midwood, K.S. (2010) DAMPening Inflammation by Modulating TLR Signalling. Mediators of Inflammation, 2010: 1-21
Pinheiro, D.O.R., Hetzel, M., Dos, A.S.M., Dallegrave, D., Friedman, G. (2010) Mechanical ventilation with high tidal volume induces inflammation in patients without lung disease. Critical Care, 14(2): R39
Protti, A., Cressoni, M., Santini, A., Langer, T., Mietto, C., Febres, D., Chierichetti, M., Coppola, S., Conte, G., Gatti, S., Leopardi, O., Masson, S., Lombardi, L., Lazzerini, M. (2011) Lung Stress and Strain during Mechanical Ventilation. American Journal of Respiratory and Critical Care Medicine, 183(10): 1354-1362
Reddy, S.P., Hassoun, P.M., Brower, R. (2007) Redox Imbalance and Ventilator-Induced Lung Injury. Antioxidants and Redox Signaling, 9(11): 2003-2012
Setzer, F., Oschatz, K., Hueter, L., Schmidt, B., Schwarzkopf, K., Schreiber, T. (2013) Susceptibility to ventilator induced lung injury is increased in senescent rats. Critical Care, 17(3): R99
Severgnini, P., Selmo, G., Lanza, C., Chiesa, A., Frigerio, A., Bacuzzi, A., Dionigi, G., Novario, R., Gregoretti, C., de Abreu, M.G., Schultz, M.J., Jaber, S., Futier, E. (2013) Protective mechanical ventilation during general anesthesia for open abdominal surgery improves postoperative pulmonary function. Anesthesiology, 118(6): 1307-21
Slutsky, A.S. (2000) Invited review: Mechanisms of ventilator-induced lung injury: a perspective. J Appl Physiol, 89(4): 1645-55
Slutsky, A.S., Ranieri, V. (2013) Ventilator-induced lung injury. New England journal of medicine, 369(22): 2126-36
Smetana, G.W., Lawrence, V.A., Cornell, J.E. (2006) Preoperative pulmonary risk stratification for noncardiothoracic surgery: Systematic review for the American College of Physicians. Annals of internal medicine, 144(8): 581-95
Sundar, S., Novack, V., Jervis, K., Bender, S., Lerner, A., Panzica, P., Mahmood, F., Malhotra, A., Talmor, D. (2011) Influence of low tidal volume ventilation on time to extubation in cardiac surgical patients. Anesthesiology, 114(5): 1102-10
Sutherasan, Y., Vargas, M., Pelosi, P. (2014) Protective mechanical ventilation in the non-injured lung: review and meta-analysis. Critical Care, 18(2): 211
Sutherasan, Y., Theerawit, P., Hongphanut, T., Kiatboonsri, C., Kiatboonsri, S. (2013) Predicting laryngeal edema in intubated patients by portable intensive care unit ultrasound. Journal of critical care, 28(5): 675-80
Sutherasan, Y., D`Antini, D., Pelosi, P. (2014) Advances in ventilator-associated lung injury: prevention is the target. Expert review of respiratory medicine, 8(2): 233-48
Syrkina, O., Jafari, B., Hales, C.A., Quinn, D.A. (2008) Oxidant stress mediates inflammation and apoptosis in ventilator-induced lung injury. Respirology, 13(3): 333-40
Talmor, D., Sarge, T., Malhotra, A., O`Donnell, C.R., Ritz, R., Lisbon, A., Novack, V., Loring, S.H. (2008) Mechanical ventilation guided by esophageal pressure in acute lung injury. New England journal of medicine, 359(20): 2095-104
Terragni, P.P., Filippini, C., Slutsky, A.S., Birocco, A., Tenaglia, T., Grasso, S., Stripoli, T., Pasero, D., Urbino, R., Fanelli, V., Faggiano, C., Mascia, L., Ranieri, V. (2013) Accuracy of plateau pressure and stress index to identify injurious ventilation in patients with acute respiratory distress syndrome. Anesthesiology, 119(4): 880-9
Thille, A.W., Esteban, A., Fernández-Segoviano, P., Rodriguez, J., Aramburu, J., Peñuelas, O., Cortés-Puch, I., Cardinal-Fernández, P., Lorente, J.A., Frutos-Vivar, F. (2013) Comparison of the Berlin Definition for Acute Respiratory Distress Syndrome with Autopsy. American Journal of Respiratory and Critical Care Medicine, 187(7): 761-767
Tremblay, L., Valenza, F., Ribeiro, S.P., Li, J., Slutsky, A.S. (1997) Injurious ventilatory strategies increase cytokines and c-fos m-RNA expression in an isolated rat lung model. Journal of clinical investigation, 99(5): 944-52
Treschan, T.A., Kaisers, W., Schaefer, M.S., Bastin, B., Schmalz, U., Wania, V., Eisenberger, C.F., Saleh, A., Weiss, M., Schmitz, A., Kienbaum, P., Sessler, D.I., Pannen, B., Beiderlinden, M. (2012) Ventilation with low tidal volumes during upper abdominal surgery does not improve postoperative lung function. British journal of anaesthesia, 109(2): 263-71
Villar, J., Cabrera, N.E., Valladares, F., Casula, M., Flores, C., Blanch, L., Quilez, M.E., Santana-Rodríguez, N., Kacmarek, R.M., Slutsky, A.S. (2011) Activation of the Wnt/β-Catenin Signaling Pathway by Mechanical Ventilation Is Associated with Ventilator-Induced Pulmonary Fibrosis in Healthy Lungs. PloS one, 6(9): e23914
Villar, J., Sulemanji, D., Kacmarek, R.M. (2014) The acute respiratory distress syndrome: incidence and mortality, has it changed?. Current opinion in critical care, 20(1): 3-9
Ware, L.B., Koyama, T., Zhao, Z., Janz, D.R., Wickersham, N., Bernard, G.R., May, A.K., Calfee, C.S., Matthay, M.A. (2013) Biomarkers of lung epithelial injury and inflammation distinguish severe sepsis patients with acute respiratory distress syndrome. Critical Care, 17(5): R253
Wolthuis, E.K., Veelo, D.P., Choi, G., Determann, R.M., Korevaar, J.C., Spronk, P.E., Kuiper, M.A., Schultz, M.J. (2007) Mechanical ventilation with lower tidal volumes does not influence the prescription of opioids or sedatives. Critical Care, 11(4): R77
Wrigge, H., Uhlig, U., Baumgarten, G., Menzenbach, J., Zinserling, J., Ernst, M., Drömann, D., Welz, A., Uhlig, S., Putensen, C. (2005) Mechanical ventilation strategies and inflammatory responses to cardiac surgery: a prospective randomized clinical trial. Intensive care medicine, 31(10): 1379-87
Yilmaz, M., Keegan, M.T., Iscimen, R., Afessa, B., Buck, C.F., Hubmayr, R.D., Gajic, O. (2007) Toward the prevention of acute lung injury: protocol-guided limitation of large tidal volume ventilation and inappropriate transfusion. Critical care medicine, 35(7): 1660-6; quiz 1667
Zupancich, E., Paparella, D., Turani, F., Munch, C., Rossi, A., Massaccesi, S., Ranieri, V. M. (2005) Mechanical ventilation affects inflammatory mediators in patients undergoing cardiopulmonary bypass for cardiac surgery: A randomized clinical trial. Journal of Thoracic and Cardiovascular Surgery, 130(2): 378-383
 

O članku

jezik rada: engleski
vrsta rada: pregledni članak
DOI: 10.5937/sanamed1401071S
objavljen u SCIndeksu: 06.05.2015.

Povezani članci

Nema povezanih članaka