Abstract Acute respiratory distress syndrome (ARDS) is a common critical illness in children and has high incidence and mortality rates among critically ill pediatric patients. Noninvasive ventilation has become a common treatment method for ARDS because of its unique features. This article reviews the research status in the application of noninvasive ventilation in children with ARDS.
Ashbaugh DG, Bigelow DB, Petty TL, et al. Acute respiratory distress in adults[J]. Lancet, 1967, 2(7511):319-323.
[3]
Bellani G, Laffey JG, Pham T, et al. Epidemiology, patterns of care, and mortality for patients with acute respiratory distress syndrome in intensive care units in 50 countries[J]. JAMA, 2016, 315(8):788-800.
[4]
Schouten LR, Veltkamp F, Bos AP, et al. Incidence and mortality of acute respiratory distress syndrome in children:a systematic review and Meta-analysis[J]. Crit Care Med, 2016, 44(4):819-829.
Najaf-Zadeh A, Leclerc F. Noninvasive positive pressure ventilation for acute respiratory failure in children:a concise review[J]. Ann Intensive Care, 2011, 1:15.
Chiumello D, Brioni M. Severe hypoxemia:which strategy to choose[J]. Crit Care, 2016, 20(1):132.
[9]
Bellani G, Laffey JG, Pham T, et al. Noninvasive ventilation of patients with acute respiratory distress syndrome. Insights from the LUNG SAFE Study[J]. Am J Respir Crit Care Med, 2017, 195(1):67-77.
[10]
Chawla R, Mansuriya J, Modi N, et al. Acute respiratory distress syndrome:predictors of noninvasive ventilation failure and intensive care unit mortality in clinical practice[J]. J Crit Care, 2016, 31(1):26-30.
[11]
Meeder AM, Tjan DH, van Zanten AR. Noninvasive and invasive positive pressure ventilation for acute respiratory failure in critically ill patients:a comparative cohort study[J]. J Thorac Dis, 2016, 8(5):813-825.
[12]
Thille AW, Contou D, Fragnoli C, et al. Non-invasive ventilation for acute hypoxemic respiratory failure:intubation rate and risk factors[J]. Crit Care, 2013, 17(6):R269.
[13]
Hilbert G, Gruson D, Vargas F, et al. Noninvasive ventilation in immunosuppressed patients with pulmonary infiltrates, fever, and acute respiratory failure[J]. N Engl J Med, 2001, 344(7):481-487.
[14]
Jaber S, Lescot T, Futier E, et al. Effect of noninvasive ventilation on tracheal reintubation among patients with hypoxemic respiratory failure following abdominal surgery:a randomized clinical trial[J]. JAMA, 2016, 315(13):1345-1353.
[15]
Akashiba T, Ishikawa Y, Ishihara H, et al. The Japanese Respiratory Society Noninvasive Positive Pressure Ventilation (NPPV) Guidelines (second revised edition)[J]. Respir Investig, 2017, 55(1):83-92.
[16]
Jeong JH, Kim DH, Kim SC, et al. Changes in arterial blood gases after use of high-flow nasal cannula therapy in the ED[J]. Am J Emerg Med, 2015, 33(10):1344-1349.
[17]
Pediatric Acute Lung Injury Consensus Conference Group. Pediatric acute respiratory distress syndrome:consensus recommendations from the Pediatric Acute Lung Injury Consensus Conference[J]. Pediatr Crit Care Med, 2015, 16(5):428-439.
[18]
Fedor KL. Noninvasive respiratory support in infants and children[J]. Respir Care, 2017, 62(6):699-717.
Roca O, Hernández G, Díaz-Lobato S, et al. Current evidence for the effectiveness of heated and humidified high flow nasal cannula supportive therapy in adult patients with respiratory failure[J]. Crit Care, 2016, 20(1):109.
[22]
Groves N, Tobin A. High flow nasal oxygen generates positive airway pressure in adult volunteers[J]. Aust Crit Care, 2007, 20(4):126-131.
[23]
Nishimura M. High-flow nasal cannula oxygen therapy in adults:physiological benefits, indication, clinical benefits, and adverse effects[J]. Respir Care, 2016, 61(4):529-541.
[24]
Nagata K, Morimoto T, Fujimoto D, et al. Efficacy of high-flow nasalcannula therapy in acute hypoxemic respiratory failure:decreased use of mechanical ventilation[J]. Respir Care, 2015, 60(10):1390-1396.
[25]
Frat JP, Thille AW, Mercat A, et al. High-flow oxygen through nasal cannula in acute hypoxemic respiratory failure[J]. N Engl J Med, 2015, 372(23):2185-2196.
[26]
Frat JP, Ragot S, Girault C, et al. High flow nasal cannula oxygen therapy in immunocompromised patients with acute hypoxemic respiratory failure[J]. Intensive Care Med Exp, 2015, 3(Suppl 1):A425.
[27]
Hernández G, Vaquero C, González P, et al. Effect of postextubation high-flow nasal cannula vs conventional oxygen therapy on reintubation in low-risk patients:a randomized clinical trial[J]. JAMA, 2016, 315(13):1354-1361.
[28]
Kotecha SJ, Adappa R, Gupta N, et al. Safety and efficacy of high-flow nasal cannula therapy in preterm infants:a Meta-analysis[J]. Pediatrics, 2015, 136(3):542-553.
[29]
Roberts CT, Owen LS, Manley BJ, et al. Nasal high-flow therapy for primary respiratory support in preterm infants[J]. N Engl J Med, 2016, 375(12):1142-1151.
[30]
Chisti MJ, Salam MA, Simth JH, et al. Bubble continuous positive airway pressure for children with severe pneumonia and hypoxaemia in Bangladesh:an open, randomised controlled trial[J]. Lancet, 2015, 386(9998):1057-1065.