RicardJD. High flow nasal oxygen in acute respiratory failure. Minerva Anestesiol, 2012; 78(7):836–841.
2.
SpoletiniG, AlotaibiM, BlasiF, HillNS. Heated humidified high-flow nasal oxygen in adults: mechanisms of action and clinical implications. Chest, 2015; 148(1):253–261.
3.
PapazianL, CorleyA, HessD, FraserJF, FratJP, GuittonC, et al. Use of high-flow nasal cannula oxygenation in ICU adults: a narrative review. Intensive Care Med, 2016; 42(9):1336–1349.
4.
CuquemelleE, PhamT, PaponJF, LouisB, DaninPE, BrochardL. Heated and humidified high-flow oxygen therapy reduces discomfort during hypoxemic respiratory failure. Respir Care, 2012; 57(10):1571–1577.
5.
FratJP, BrugiereB, RagotS, ChatellierD, VeinsteinA, GoudetV, et al. Sequential application of oxygen therapy via high-flow nasal cannula and noninvasive ventilation in acute respiratory failure: an observational pilot study. Respir Care, 2015; 60(2):170–178.
6.
GrovesN, TobinA. High flow nasal oxygen generates positive airway pressure in adult volunteers. Aust Crit Care, 2007; 20(4):126–131.
RieraJ, PérezP, CortésJ, RocaO, MasclansJR, RelloJ. Effect of high-flow nasal cannula and body position on end-expiratory lung volume: a cohort study using electrical impedance tomography. Respir Care, 2013; 58(4):589–596.
9.
PlotnikowGA, ThilleAW, VasquezDN, PrattoRA, QuirogaCM, AndrichME, et al. Effects of high-flow nasal cannula on end-expiratory lung impedance in semi-seated healthy subjects. Respir Care, 2018; 63(8):1016–1023.
10.
MöllerW, CelikG, FengS, BartensteinP, MeyerG, OliverE, et al. Nasal high flow clears anatomical dead space in upper airway models. J Appl Physiol, 2015; 118(12):1525–1532.
11.
Miguel-MontanesR, HajageD, MessikaJ, BertrandF, GaudryS, RafatC, et al. Use of high-flow nasal cannula oxygen therapy to prevent desaturation during tracheal intubation of intensive care patients with mild-to-moderate hypoxemia. Crit Care Med, 2015; 43(3):574–583.
12.
JaberS, MonninM, GirardM, ConseilM, CisseM, CarrJ, et al. Apnoeic oxygenation via high-flow nasal cannula oxygen combined with non-invasive ventilation preoxygenation for intubation in hypoxaemic patients in the intensive care unit: the single-centre, blinded, randomised controlled OPTINIV trial. Intensive Care Med, 2016; 42(12):1877–1887.
13.
FratJP, RicardJD, CoudroyR, RobertR, RagotS, ThilleAW. on behalf of REVA network. Pre-oxygenation with non-invasive ventilation versus high-flow nasal cannula oxygen therapy for intubation of patients with acute hypoxemic respiratory failure in ICU: the prospective randomized controlled FLORALI-2 study protocol. BMJ Open, 2017; 7(12):e018611.
14.
Vourc'hM, AsfarP, VolteauC, BachoumasK, ClavierasN, EgreteauPY, et al. High-flow nasal cannula oxygen during endotracheal intubation in hypoxemic patients: a randomized controlled clinical trial. Intensive Care Med, 2015; 41(9):1538–1548.
15.
MaggioreSM, IdoneFA, VaschettoR, FestaR, CataldoA, AntonicelliF, et al. Nasal high-flow versus Venturi mask oxygen therapy after extubation. Effects on oxygenation, comfort, and clinical outcome. Am J Respir Crit Care Med, 2014; 190(3):282–288.
16.
HernándezG, VaqueroC, ColinasL, CuenaR, GonzálezP, CanabalA, et al. Effect of postextubation high-flow nasal cannula vs noninvasive ventilation on reintubation and postextubation respiratory failure in high-risk patients: a randomized clinical trial. JAMA, 2016; 316(15):1565–1574.
17.
HernándezG, VaqueroC, GonzálezP, SubiraC, Frutos-VivarF, RialpG, et al. Effect of postextubation high-flow nasal cannula vs conventional oxygen therapy on reintubation in low-risk patients: a randomized clinical trial. JAMA, 2016; 315(13):1354–1361.
18.
FratJP, ThilleAW, MercatA, GiraultC, RagotS, PerbetS, et al.; FLORALI Study Group, REVA Network. High-flow oxygen through nasal cannula in acute hypoxemic respiratory failure. N Engl J Med, 2015; 372(23):2185–2196.
19.
AzoulayE, LemialeV, MokartD, NseirS, ArgaudL, PèneF, et al. Effect of high-flow nasal oxygen vs standard oxygen on 28-day mortality in immunocompromised patients with acute respiratory failure: the HIGH randomized clinical trial. JAMA, 2018; 320(20):2099–2107.
20.
LemialeV, Resche-RigonM, MokartD, PèneF, ArgaudL, MayauxJ, et al. High-flow nasal cannula oxygenation in immunocompromised patients with acute hypoxemic respiratory failure: a Groupe de Recherche Respiratoire en Réanimation Onco-Hématologique Study. Crit Care Med, 2017; 45(3):e274–e280.
21.
RochwergB, GrantonD, WangDX, HelvizY, EinavS, FratJP, et al. High flow nasal cannula compared with conventional oxygen therapy for acute hypoxemic respiratory failure: a systematic review and meta-analysis. Intensive Care Med, 2019; 45(5):563–572.
22.
RicardJD, DibF, Esposito-FareseM, MessikaJ, GiraultC. REVA network. Comparison of high flow nasal cannula oxygen and conventional oxygen therapy on ventilatory support duration during acute-on-chronic respiratory failure: study protocol of a multicentre, randomised, controlled trial. The “HIGH-FLOW ACRF” study. BMJ Open, 2018; 8(9):e022983.
23.
LengletH, SztrymfB, LeroyC, BrunP, DreyfussD, RicardJD. Humidified high flow nasal oxygen during respiratory failure in the emergency department: feasibility and efficacy. Respir Care, 2012; 57(11):1873–1878.
24.
BellN, HutchinsonCL, GreenTC, RoganE, BeinKJ, DinhMM. Randomised control trial of humidified high flow nasal cannulae versus standard oxygen in the emergency department. Emerg Med Australas, 2015; 27(6):537–541.
25.
MakdeeO, MonsomboonA, SurabenjawongU, PraphruetkitN, ChaisirinW, ChakornT, et al. High-flow nasal cannula versus conventional oxygen therapy in emergency department patients with cardiogenic pulmonary edema: a randomized controlled trial. Ann Emerg Med, 2017; 70(4):465–472.e2.
26.
RittayamaiN, TscheikunaJ, PraphruetkitN, KijpinyochaiS. Use of high-flow nasal cannula for acute dyspnea and hypoxemia in the emergency department. Respir Care, 2015; 60(10):1377–1382.
27.
JonesPG, KamonaS, DoranO, SawtellF, WilsherM. Randomized controlled trial of humidified high-flow nasal oxygen for acute respiratory distress in the emergency department: the HOT-ER Study. Respir Care, 2016; 61(3):291–299.
28.
DoshiP, WhittleJS, BublewiczM, KearneyJ, AsheT, GrahamR, et al. High-velocity nasal insufflation in the treatment of respiratory failure: a randomized clinical trial. Ann Emerg Med, 2018; 72(1):73–83.e5.
29.
KangBJ, KohY, LimCM, HuhJW, BaekS, HanM, et al. Failure of high-flow nasal cannula therapy may delay intubation and increase mortality. Intensive Care Med, 2015; 41(4):623–632.
30.
RicardJD, MessikaJ, SztrymfB, GaudryS. Impact on outcome of delayed intubation with high-flow nasal cannula oxygen: is the device solely responsible?. Intensive Care Med, 2015; 41(6):1157–1158.
31.
PirretAM, TakereiSF, MathesonCL, KellyM, StricklandW, HarfordJ, et al. Nasal high flow oxygen therapy in the ward setting: a prospective observational study. Intensive Crit Care Nurs, 2017; 42(Can't get issue from record):127–134.
32.
ZemachS, HelvizY, ShitritM, FriedmanR, LevinPD. The use of high-flow nasal cannula oxygen outside the intensive care unit. Respir Care, 2019; 64(11):1333–1342.
33.
FratJP, RagotS, CoudroyR, ConstantinJM, GiraultC, PratG, et al.; REVA network. Predictors of intubation in patients with acute hypoxemic respiratory failure treated with a noninvasive oxygenation strategy. Crit Care Med, 2018; 46(2):208–215.
34.
RocaO, MessikaJ, CaraltB, García-de-AciluM, SztrymfB, RicardJD, MasciansJR. Predicting success of high-flow nasal cannula in pneumonia patients with hypoxemic respiratory failure: the utility of the ROX index. J Crit Care, 2016; 36:200–206.
35.
SztrymfB, MessikaJ, BertrandF, HurelD, LeonR, DreyfussD, RicardJD. Beneficial effects of humidified high flow nasal oxygen in critical care patients: a prospective pilot study. Intensive Care Med, 2011; 37(11):1780–1786.
36.
RocaO, CaraltB, MessikaJ, SamperM, SztrymfB, HernándezG, et al. An index combining respiratory rate and oxygenation to predict outcome of nasal high-flow therapy. Am J Respir Crit Care Med, 2019; 199(11):1368–1376.
37.
PetersSG, HoletsSR, GayPC. High-flow nasal cannula therapy in do-not-intubate patients with hypoxemic respiratory distress. Respir Care, 2013; 58(4):597–600.