Page 755 - Hall et al (2015) Principles of Critical Care-McGraw-Hill
P. 755
4 References
104. Villar J, et al. A high positive end-expiratory pressure, low tidal 121. Brower RG, et al. Higher versus lower positive end- expiratory
volume ventilatory strategy improves outcome in persistent pressures in patients with the acute respiratory distress
acute respiratory distress syndrome: a randomized, controlled syndrome. N Engl J Med. 2004;351(4):327-336.
trial. Crit Care Med. 2006;34(5):1311-1318. 122. Briel M, et al. Higher vs lower positive end-expiratory pressure
105. Crotti S, et al. Recruitment and derecruitment during acute in patients with acute lung injury and acute respiratory dis-
respiratory failure: a clinical study. Am J Respir Crit Care Med. tress syndrome: systematic review and meta-analysis. JAMA.
2001;164(1):131-140. 2010;303(9):865-873.
106. Pelosi P, et al. Recruitment and derecruitment during acute 123. Mascia L, et al. Effect of a lung protective strategy for organ
respiratory failure: an experimental study. Am J Respir Crit Care donors on eligibility and availability of lungs for transplantation:
Med. 2001;164(1):122-130. a randomized controlled trial. JAMA. 2010;304(23):2620-2627.
107. Hickling KG. Best compliance during a decremental, but not 124. Gattinoni L, et al. Effect of prone positioning on the sur-
incremental, positive end-expiratory pressure trial is related vival of patients with acute respiratory failure. N Engl J Med.
to open-lung positive end-expiratory pressure: a mathematical 2001;345(8):568-573.
model of acute respiratory distress syndrome lungs. Am J Respir 125. Guerin C, et al. Effects of systematic prone positioning in
Crit Care Med. 2001;163(1):69-78. hypoxemic acute respiratory failure: a randomized controlled
108. Venegas JG, Harris RS, Simon BA. A comprehensive equa- trial. JAMA. 2004;292(19):2379-2387.
tion for the pulmonary pressure-volume curve. J Appl Physiol. 126. Taccone P, et al. Prone positioning in patients with moderate
1998;84(1):389-395. and severe acute respiratory distress syndrome: a randomized
109. Grasso S, et al. Airway pressure-time curve profile (stress index) controlled trial. JAMA. 2009;302(18):1977-1984.
detects tidal recruitment/hyperinflation in experimental acute 127. Sud S, et al. Prone ventilation reduces mortality in patients with
lung injury. Crit Care Med. 2004;32(4):1018-1027. acute respiratory failure and severe hypoxemia: systematic review
110. Ranieri VM, et al. Pressure-time curve predicts minimally and meta-analysis. Intensive Care Med. 2010;36(4):585-599.
injurious ventilatory strategy in an isolated rat lung model. 128. Sud S, et al. Effect of mechanical ventilation in the prone
Anesthesiology. 2000;93(5):1320-1328. position on clinical outcomes in patients with acute hypoxemic
111. Bodenstein M, David M, Markstaller K. Principles of electrical respiratory failure: a systematic review and meta-analysis.
impedance tomography and its clinical application. Crit Care CMAJ. 2008;178(9):1153-1161.
Med. 2009;37(2):713-724. 129. Marini JJ. Prone positioning for ARDS: defining the target.
112. Meier T, et al. Assessment of regional lung recruitment and Intensive Care Med. 2010;36(4):559-561.
derecruitment during a PEEP trial based on electrical imped- 130. Arnold JH, et al. Prospective, randomized comparison of high-
ance tomography. Intensive Care Med. 2008;34(3):543-550. frequency oscillatory ventilation and conventional mechanical
113. Kunst PW, et al. Monitoring of recruitment and derecruitment ventilation in pediatric respiratory failure. Crit Care Med.
by electrical impedance tomography in a model of acute lung 1994;22(10):1530-1539.
injury. Crit Care Med. 2000;28(12):3891-3895. 131. Derdak S, et al. High-frequency oscillatory ventilation for acute
114. Victorino JA, et al. Imbalances in regional lung ventilation: a respiratory distress syndrome in adults: a randomized, con-
validation study on electrical impedance tomography. Am J trolled trial. Am J Respir Crit Care Med. 2002;166(6):801-808.
Respir Crit Care Med. 2004;169(7):791-800. 132. Sud S, et al. High frequency oscillation in patients with acute
115. Brochard L, et al. Tidal volume reduction for prevention of lung injury and acute respiratory distress syndrome (ARDS):
ventilator-induced lung injury in acute respiratory distress syn- systematic review and meta-analysis. BMJ. 2010;340:c2327.
drome. The Multicenter Trail Group on Tidal Volume reduction 133. Ferguson ND, et al. High-frequency oscillation in early acute respi-
in ARDS. Am J Respir Crit Care Med. 1998;158(6):1831-1838. ratory distress syndrome. New Engl J Med. 2013;368(9):795-805.
116. Brower RG, et al. Prospective, randomized, controlled clinical 134. Young D, et al. High-frequency oscillation for acute respiratory
trial comparing traditional versus reduced tidal volume ventila- distress syndrome. New Engl J Med. 2013;368(9):806-813.
tion in acute respiratory distress syndrome patients. Crit Care 135. Zapol WM, et al. Extracorporeal membrane oxygenation in
Med. 1999;27(8):1492-1498. severe acute respiratory failure. A randomized prospective
117. Stewart TE, et al. Evaluation of a ventilation strategy to prevent study. JAMA. 1979;242(20):2193-2196.
barotrauma in patients at high risk for acute respiratory distress 136. Morris AH, et al. Randomized clinical trial of pressure-con-
syndrome. Pressure- and Volume-Limited Ventilation Strategy trolled inverse ratio ventilation and extracorporeal CO removal
2
Group. N Engl J Med. 1998;338(6):355-361. for adult respiratory distress syndrome. Am J Respir Crit Care
118. Eisner MD, et al. Efficacy of low tidal volume ventilation in Med. 1994;149(2 pt 1):295-305.
patients with different clinical risk factors for acute lung injury 137. Peek GJ, et al. Efficacy and economic assessment of conventional
and the acute respiratory distress syndrome. Am J Respir Crit ventilatory support versus extracorporeal membrane oxygen-
Care Med. 2001;164(2):231-236. ation for severe adult respiratory failure (CESAR): a multicentre
119. Eichacker PQ, et al. Meta-analysis of acute lung injury and acute randomised controlled trial. Lancet. 2009;374(9698):1351-1363.
respiratory distress syndrome trials testing low tidal volumes. 138. Matthay MA, et al. Future research directions in acute lung injury:
Am J Respir Crit Care Med. 2002;166(11):1510-1514. summary of a national heart, lung, and blood institute working
120. Steinbrook R. How best to ventilate? Trial design and patient group. Am J Respir Crit Care Med. 2003;167(7):1027-1035.
safety in studies of the acute respiratory distress syndrome. 139. Fu Z, et al. High lung volume increases stress failure in pulmo-
N Engl J Med. 2003;348(14):1393-1401. nary capillaries. J Appl Physiol. 1992;73(1):123-133.
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