dc.contributorVarón Vega, Fabio Andrés
dc.contributorGiraldo Cadavid, Luis Fernando
dc.creatorCadena Andrade, Alvaro José
dc.creatorSilva Cala, Lucia Catalina
dc.date.accessioned2019-08-02T15:39:50Z
dc.date.available2019-08-02T15:39:50Z
dc.date.created2019-08-02T15:39:50Z
dc.date.issued2019
dc.identifierhttp://repository.urosario.edu.co/handle/10336/20036
dc.identifierhttps://doi.org/10.48713/10336_20036
dc.languagespa
dc.publisherUniversidad del Rosario
dc.publisherEspecialización en Medicina Interna
dc.publisherFacultad de Medicina
dc.rightsinfo:eu-repo/semantics/openAccess
dc.rightsAbierto (Texto Completo)
dc.rightsEL AUTOR, manifiesta que la obra objeto de la presente autorización es original y la realizó sin violar o usurpar derechos de autor de terceros, por lo tanto la obra es de exclusiva autoría y tiene la titularidad sobre la misma. PARGRAFO: En caso de presentarse cualquier reclamación o acción por parte de un tercero en cuanto a los derechos de autor sobre la obra en cuestión, EL AUTOR, asumirá toda la responsabilidad, y saldrá en defensa de los derechos aquí autorizados; para todos los efectos la universidad actúa como un tercero de buena fe. EL AUTOR, autoriza a LA UNIVERSIDAD DEL ROSARIO, para que en los términos establecidos en la Ley 23 de 1982, Ley 44 de 1993, Decisión andina 351 de 1993, Decreto 460 de 1995 y demás normas generales sobre la materia, utilice y use la obra objeto de la presente autorización. -------------------------------------- POLITICA DE TRATAMIENTO DE DATOS PERSONALES. Declaro que autorizo previa y de forma informada el tratamiento de mis datos personales por parte de LA UNIVERSIDAD DEL ROSARIO para fines académicos y en aplicación de convenios con terceros o servicios conexos con actividades propias de la academia, con estricto cumplimiento de los principios de ley. Para el correcto ejercicio de mi derecho de habeas data cuento con la cuenta de correo habeasdata@urosario.edu.co, donde previa identificación podré solicitar la consulta, corrección y supresión de mis datos.
dc.sourceFanelli V, Vlachou A, Ghannadian S, Simonetti U, Slutsky AS, Zhang H. Acute respiratory distress syndrome: New definition, current and future therapeutic options. J Thorac Dis. 2013;5(3):326–34.
dc.sourceRubenfeld GD, Caldwell E, Peabody E, Weaver J, Martin DP, Neff M, et al. Incidence and Outcomes of Acute Lung Injury. N Engl J Med. 2005;353(16):1685–93.
dc.sourceLi G, Malinchoc M, Cartin-Ceba R, Venkata C V., Kor DJ, Peters SG, et al. Eight-year trend of acute respiratory distress syndrome: A population-based study in Olmsted County, Minnesota. Am J Respir Crit Care Med. 2011;183(1):59–66.
dc.sourceNetwork TA. Ventilation with lower tidal volumes as compared with traditional tidal volumes for acute lung injury and the acute respiratory distress syndrome. N Engl J Med. 2000;342(18):1301–8.
dc.sourceChoi W Il, Shehu E, Lim SY, Koh SO, Jeon K, Na S, et al. Markers of poor outcome in patients with acute hypoxemic respiratory failure. J Crit Care. 2014;29(5):797–802.
dc.sourceLinko R, Okkonen M, Pettilä V, Perttilä J, Parviainen I, Ruokonen E, et al. Acute respiratory failure in intensive care units. FINNALI: A prospective cohort study. Intensive Care Med. 2009;35(8):1352–61.
dc.sourceVillar J, Blanco J, Añón JM, Santos-Bouza A, Blanch L, Ambrós A, et al. The ALIEN study: Incidence and outcome of acute respiratory distress syndrome in the era of lung protective ventilation. Intensive Care Med. 2011;37(12):1932–41.
dc.sourceSigurdsson MI, Sigvaldason K, Gunnarsson TS, Moller A, Sigurdsson GH. Acute respiratory distress syndrome: Nationwide changes in incidence, treatment and mortality over 23 years. Acta Anaesthesiol Scand. 2013;57(1):37–45.
dc.sourceBice T, Cox CE, Carson SS. Cost and Healthcare Utilization in ARDS – Different from Other Critical Illness? Semin Respir Crit Care Med. 2013;34(4):529–36.
dc.sourceRanieri VM, Rubenfeld GD, Thompson BT, Ferguson ND, Caldwell E, Fan E, et al. Acute respiratory distress syndrome: The Berlin definition. JAMA - J Am Med Assoc. 2012;307(23):2526–33.
dc.sourceHu S, He H, Pan C, Liu A, Liu S, Liu L, et al. The effect of prone positioning on mortality in patients with acute respiratory distress syndrome: a meta-analysis of randomized controlled trials. Crit Care. 2014;18(3):R109.
dc.sourceAlhazzani W, Alshahrani M, Jaeschke R, Forel J, Papazian L, Sevransky J, et al. Neuromuscular blocking agents in acute respiratory distress syndrome: a systematic review and meta-analysis of randomized controlled trials. Crit Care. 2013;17(2):R43.
dc.sourceSeeley E, McAuley DF, Eisner M, Miletin M, Matthay MA, Kallet RH. Predictors of mortality in acute lung injury during the era of lung protective ventilation. Thorax. 2008;63(11):994–8.
dc.sourceLuo L, Shaver CM, Zhao Z, Koyama T, Calfee CS, Bastarache JA, et al. Clinical Predictors of Hospital Mortality Differ Between Direct and Indirect ARDS. Chest. 2017;151(4):755–63.
dc.sourceLaffey JG, Bellani G, Pham T, Fan E, Madotto F, Bajwa EK, et al. Potentially modifiable factors contributing to outcome from acute respiratory distress syndrome: the LUNG SAFE study. Intensive Care Med. 2016;42(12):1865–76.
dc.sourceLuhr OR, Antonsen K, Karlsson M, Aardal S, Thorsteinsson A, Frostell CG, et al. Incidence and Mortality after Acute Respiratory Failure and Acute Respiratory Distress Syndrome in Sweden, Denmark, and Iceland. Am J Respir Crit Care Med. 1999;159:1849–61.
dc.sourceBalzer F, Menk M, Ziegler J, Pille C, Wernecke KD, Spies C, et al. Predictors of survival in critically ill patients with acute respiratory distress syndrome (ARDS): An observational study. BMC Anesthesiol. 2016;16(1):1–8.
dc.sourceKao H-C, Lai T-Y, Hung H-L, Chen Y-M, Chou P-A, Wang C-C, et al. Sequential oxygenation index and organ dysfunction assessment within the first 3 days of mechanical ventilation predict the outcome of adult patients with severe acute respiratory failure. Sci World J. 2013;2013.
dc.sourceKhemani RG, Rubin S, Belani S, Leung D, Erickson S, Smith LS, et al. Pulse oximetry vs. PaO2 metrics in mechanically ventilated children: Berlin definition of ARDS and mortality risk. Intensive Care Med. 2015;41(1):94–102.
dc.sourceDesPrez K, McNeil JB, Wang C, Bastarache JA, Shaver CM, Ware LB. Oxygenation Saturation Index Predicts Clinical Outcomes in ARDS. Chest. 2017;152(6):1151–8.
dc.sourceAgarwal R, Srinivas R, Nath A, Jindal SK. Is the Mortality Higher in the Pulmonary vs the Extrapulmonary ARDS ? 2008;133(6):1463–73.
dc.sourceSheu C, Gong MN, Chen F, Thompson BT, Christiani DC. The influence of infection sites on development and mortality of ARDS. 2010;36:963–70.
dc.sourceBoissier F, Leon R, Vieillard-baron A, Brun-buisson C. Prevalence and prognosis of cor pulmonale during protective ventilation for acute respiratory distress syndrome. Intensive Care Med. 2013;39(10):1725–33.
dc.sourceLhéritier G, Legras A, Caille A, Lhern T, Mathonnet A, Frat J-P, et al. Prevalence and prognostic value of acute cor pulmonale and patent foramen ovale in ventilated patients with early acute respiratory distress syndrome : a multicenter study. Intensive Care Med. 2013;39(10):1734.1742.
dc.sourceMekontso A, Boissier F, Charron C, Bégot E, Repesse X, Legras A, et al. Acute cor pulmonale during protective ventilation for acute respiratory distress syndrome : prevalence , predictors , and clinical impact. Intensive Care Med. 2016;42(5):862–70.
dc.sourceCalderón J, Carvajal C, Giraldo N, Pacheco C, Gómez C, Gallego D, et al. Mortalidad y factores asociados en pacientes con síndrome de dificultad respiratoria agudo ( SDRA ) en un hospital universitario Mortality and associated factors in patients with acute respiratory distress syndrome ( ARDS ) in a university hospital. Acta Med Colomb. 2015;40(4):305–9.
dc.sourceBernard GR, Artigas A, Brigham KL, Carlet J, Falke K, Hudson L, et al. The American-European Consensus Conference on ARDS. Definitions, mechanisms, relevant outcomes, and clinical trial coordination. Am J Respir Crit Care Med. 1994 Mar 1;149(3):818–24.
dc.sourceAshbaugh D, Boyd Bigelow D, Petty T, Levine B. Acute Respiratory Distress in Adults. Lancet. 1967 Feb 17;290(7511):319–23.
dc.sourceSánchez Casado M, Quintana Díaz M, Palacios D, Hortigüela V, Marco Schulke C, García J, et al. Relationship between the alveolar-arterial oxygen gradientand PaO2/FiO2-introducing peep into the model | Relación entre el gradiente alveolo-arterial de oxígeno y la PaO 2/FiO 2 introduciendo la PEEP en el modelo. Med Intensiva. 2012;36(5):329–34.
dc.sourceEl-Khatib MF, Jamaleddine GW. A New Oxygenation Index for Reflecting Intrapulmonary Shunting in Patients Undergoing Open-Heart Surgery. Chest. 2004;125(2):592–6.
dc.sourceMontes De Oca MA, Xóchitl Padua MA, Olvera CI. Ajuste de la relación PaO 2 /FiO 2 a la presión barométrica: Presión barométrica-PaO 2 /FiO 2. 2010;24(1):8–12.
dc.sourceThe ARDS Network. Higher versus Lower Positive End-Expiratory Pressures in Patients with the Acute Respiratory Distress Syndrome. 2004;351(4):327–36.
dc.sourcePérez-padilla R, Hernández-cárdenas CM, Lugo-goytia G. Classifying Acute Respiratory Distress Syndrome Severity : Correcting the Arterial Oxygen Partial Pressure to Fractional Inspired Oxygen at Altitude. 2016;68:169–70.
dc.sourcePérez-Padilla J. Altitude , the Ratio of PaO 2 to Fraction of Inspired Oxygen , and Shunt : Impact on the Assessment of Acute Lung Injury. 2004;40(10):459–62.
dc.sourceZochios V, Parhar K, Tunnicliffe W, Roscoe A, Gao F. The Right Ventricle in Acute Respiratory Distress Syndrome. Chest. 2017;152(1):181–93.
dc.sourceHosmer D, Lemesbow S, Sturdivant R. Applied Logistic Regression. In: Wiley J, Inc S, editors. Applied Logistic Regression. 3rd ed. New York; 2013. p. 401–8.
dc.sourceHsich F, Bloch D, Larsen M. A simple method of sample size calculation for linear and logistic regression. Stat Med. 1998;17(14):1623–34.
dc.sourceMachin D, Campbell M, Tan S, Tan S. Comparing survival curves. In: Willey-Blackwell, editor. Sample Size Tables for Clinical Studies. 3rd ed. West Sussex, UK; 2009. p. 101.
dc.sourceHormer D, Lemesbow S, Sturdivant R. Model-Building Strategies and Methods for Logistic Regression. In: Sons W&, editor. Applied Logistic Regression. 3rd ed. New York; 2013. p. 89–153.
dc.sourceAmato M, Meade M, Slutsky AS, Brochard L, Costa EL V, Schoenfeld DA, et al. Driving Pressure and Survival in the Acute Respiratory Distress Syndrome. N Engl J Med. 2015;372(8):747–55.
dc.sourceLaniado-laborin R, Rendón A, Batiz F, Alcantar-schramm JM, Bauerle O. High Altitude and Chronic Obstructive Pulmonary Disease Prevalence : A Casual or Causal Correlation ? Arch Bronconeumol. 2012;48(5):156–60.
dc.sourceOrtiz G. Effect of Altitude on the Evolution of Acute Respiratory Distress Syndrome [Internet]. 2017. Available from: https://clinicaltrials.gov/ct2/show/NCT02871063
dc.sourceBrun-Buisson C, Minelli C, Bertolini G, Brazzi L, Pimentel J, Lewandowski K, et al. Epidemiology and outcome of acute lung injury in European intensive care units Results from the ALIVE study. Intensive Care Med. 2004;30(1):51–61.
dc.sourceSoto GJ, Frank AJ, Christiani DC, Gong MN. Body mass index and acute kidney injury in the acute respiratory distress syndrome. Crit Care Med. 2012;40(9):2601–8.
dc.sourceLin C, Kao K, Tian Y, Jenq C, Chang M, Chen Y, et al. Outcome Scoring Systems for Acute Respiratory Distress Syndrome. Shock. 2010;34(4):352–7.
dc.sourceVillar J, Blanco J, Campo R, Andaluz-ojeda D, Díaz-domínguez FJ, Muriel A, et al. Assessment of PaO 2 / FiO 2 for strati fi cation of patients with moderate and severe acute respiratory distress syndrome. BMJ Open. 2015;5(e006812):1–8.
dc.sourceGong MN, Thompson BT, Williams P, Pothier L, Boyce PD, Christiani DC. Clinical predictors of and mortality in acute respiratory distress syndrome: Potential role of red cell transfusion. Crit Care Med. 2005;33(6):1191–8.
dc.sourceVaporidi K, Voloudakis G, Priniannakis G, Kondili E, Koutsopoulos A, Tsatsanis C, et al. Effects of respiratory rate on ventilator-induced lung injury at a constant PaCO2 in a mouse model of normal lung. Crit Care Med. 2008;36(4):1277–83.
dc.sourceGuo L, Xie J, Huang Y, Pan C, Yang Y, Qiu H, et al. Higher PEEP improves outcomes in ARDS patients with clinically objective positive oxygenation response to PEEP : a systematic review and meta-analysis. BMC Anesthesiol. 2018;18(172):1–11.
dc.sourceInvestigators A. Effect of Lung Recruitment and Titrated Positive End-Expiratory Pressure (PEEP) vs Low PEEP on Mortality in Patients With Acute Respiratory Distress Syndrome A Randomized Clinical Trial. JAMA - J Am Med Assoc. 2017;318(14):1335–45.
dc.sourceArnaud T, Esteban A, Fernandez-Segoviano P, Rodriguez J, Aramburu J, Peñuelas O, et al. Comparison of the Berlin Definition for Acute Respiratory Distress Syndrome with Autopsy. 2012;187(7):761–7.
dc.sourceinstname:Universidad del Rosario
dc.sourcereponame:Repositorio Institucional EdocUR
dc.subjectSíndrome de dificultad respiratorio agudo
dc.subjectMortalidad
dc.subjectHipoxemia
dc.subjectVentilación mecánica
dc.subjectAltitud
dc.subjectPronóstico
dc.titleFactores asociados a mortalidad en pacientes con SDRA en una unidad de cuidados intensivos en Bogotá, Colombia
dc.typemasterThesis


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