BryanAC. Conference on the scientific basis of respiratory therapy. Pulmonary physiotherapy in the pediatric age group. Comments of a devil’s advocate. Am Rev Respir Dis, 1974; 110(6 Pt 2):143-144.
2.
GuérinC, ReignierJ, RichardJC, BeuretP, GacouinA, BoulainT, et al. PROSEVA Study Group. Prone positioning in severe acute respiratory distress syndrome. N Engl J Med, 2013; 368(23):2159-2168.
3.
MunshiL, Del SorboL, AdhikariNKJ, HodgsonCL, WunschH, MeadeMO, et al. Prone position for acute respiratory distress syndrome. a systematic review and meta-analysis. Ann Am Thorac Soc, 2017; 14(Supplement_4):S280-s288.
4.
ScaravilliV, GrasselliG, CastagnaL, ZanellaA, IsgròS, LucchiniA, et al. Prone positioning improves oxygenation in spontaneously breathing non-intubated patients with hypoxemic acute respiratory failure: a retrospective study. J Crit Care, 2015; 30(6):1390-1394.
MatthewmanMC, YanaseF, Costa-PintoR, JonesD, KaralapillaiD, ModraL, et al. Hemodynamic changes during prone versus supine position in patients with COVID-19 ARDS. Aust Crit Care, 2023 [Epub ahead of print] doi: 10.016/j.aucc.2023.03.006.
7.
Dell’AnnaAM, CarelliS, CicettiM, StellaC, BongiovanniF, NataliniD, et al. Hemodynamic response to positive end-expiratory pressure and prone position in COVID-19 ARDS. Respir Physiol Neurobiol, 2022; 298:103844.
8.
AsarS, AcicbeÖ, SabazMS, TontuF, CananE, CukurovaZ, et al. Comparison of respiratory and hemodynamic parameters of COVID-19 and non-COVID-19 ARDS patients. Indian J Crit Care Med, 2021; 25(6):704-708.
9.
García-CruzE, Manzur-SandovalD, Gopar-NietoR, Murillo-OchoaAL, Bejarano-AlvaG, Rojas-VelascoG, et al. Transthoracic echocardiography during prone position ventilation: lessons from the COVID-19 pandemic. J Am Coll Emerg Physicians Open, 2020; 1(5):730-736.
10.
EvrardB, GoudelinM, FedouAL, VignonP. Hemodynamic response to prone ventilation in COVID-19 patients assessed with 3D transesophageal echocardiography. Intensive Care Med, 2020; 46(11):2099-2101.
11.
Jacquet-LagrèzeM, RiadZ, PortranP, ChesnetD, SchweizerR, FerrarisA, et al. Hemodynamic effects of awake prone positioning on patients with COVID-19 acute respiratory failure. Respir Care, 2023; 68(6):713-720.
12.
Santos-MartínezLE, Mendoza-CopaG, García-CruzE, Álvarez-ÁlvarezRJ, Bucio-RetaRE, González-RuizFJ, et al. Feasibility in the echocardiographic estimation of parameters of the right ventricle in prone position. Arch Cardiol Mex, 2020; 90(2):130-137.
13.
JozwiakM, MercadoP, TeboulJL, BenmalekA, GimenezJ, DépretF, et al. What is the lowest change in cardiac output that transthoracic echocardiography can detect?. Crit Care, 2019; 23(1):116.
14.
BrunauerA, KoköferA, BataarO, Gradwohl-MatisI, DanklD, BakkerJ, DünserMW. Changes in peripheral perfusion relate to visceral organ perfusion in early septic shock: a pilot study. J Crit Care, 2016; 35:105-109.
15.
SebatC, VandegriftMA, OldroydS, KramerA, SebatF. Capillary refill time as part of an early warning score for rapid response team activation is an independent predictor of outcomes. Resuscitation, 2020; 153:105-110.
16.
GierhardtM, PakO, WalmrathD, SeegerW, GrimmingerF, GhofraniHA, et al. Impairment of hypoxic pulmonary vasoconstriction in acute respiratory distress syndrome. Eur Respir Rev, 2021; 30(161):210059.
17.
Vieillard-BaronA, CharronC, CailleV, BelliardG, PageB, JardinF. Prone positioning unloads the right ventricle in severe ARDS. Chest, 2007; 132(5):1440-1446.
18.
JozwiakM, TeboulJL, AnguelN, PersichiniR, SilvaS, ChemlaD, et al. Beneficial hemodynamic effects of prone positioning in patients with acute respiratory distress syndrome. Am J Respir Crit Care Med, 2013; 188(12):1428-1433.
19.
LaiC, MonnetX, TeboulJL. Hemodynamic implications of prone positioning in patients with ARDS. Crit Care, 2023; 27(1):98.
20.
JabotJ, TeboulJL, RichardC, MonnetX. Passive leg raising for predicting fluid responsiveness: importance of the postural change. Intensive Care Med, 2009; 35(1):85-90.
21.
Ibarra-EstradaM, Gamero-RodríguezMJ, García-de-AciluM, RocaO, Sandoval-PlascenciaL, Aguirre-AvalosG, et al. Lung ultrasound response to awake prone positioning predicts the need for intubation in patients with COVID-19–induced acute hypoxemic respiratory failure: an observational study. Crit Care, 2022; 26(1):189.
22.
LangM, SomA, MendozaDP, FloresEJ, ReidN, CareyD, et al. Hypoxemia related to COVID-19: vascular and perfusion abnormalities on dual-energy CT. Lancet Infect Dis, 2020; 20(12):1365-1366.
23.
LaiC, AddaI, TeboulJL, PersichiniR, GavelliF, GuerinL, et al. Effects of prone positioning on venous return in patients with acute respiratory distress syndrome. Crit Care Med, 2021; 49(5):781-789.
24.
HeringR, VorwerkR, WriggeH, ZinserlingJ, SchröderS, von SpiegelT, et al. Prone positioning, systemic hemodynamics, hepatic indocyanine green kinetics, and gastric intramucosal energy balance in patients with acute lung injury. Intensive Care Med, 2002; 28(1):53-58.
25.
BrückenU, GrensemannJ, WapplerF, SakkaSG. Influence of prone positioning on the measurement of transpulmonary thermodilution–derived variables in critically ill patients. Acta Anaesthesiol Scand, 2011; 55(9):1061-1067.
26.
MentzelopoulosSD, RoussosC, ZakynthinosSG. Prone position reduces lung stress and strain in severe acute respiratory distress syndrome. Eur Respir J, 2005; 25(3):534-544.
27.
RialpG, BetbeséAJ, Pérez-MárquezM, ManceboJ. Short-term effects of inhaled nitric oxide and prone position in pulmonary and extrapulmonary acute respiratory distress syndrome. Am J Respir Crit Care Med, 2001; 164(2):243-249.
28.
MatejovicM, RokytaRJr, RadermacherP, KrouzeckyA, SramekV, NovakI. Effect of prone position on hepato-splanchnic hemodynamics in acute lung injury. Intensive Care Med, 2002; 28(12):1750-1755.
29.
JollietP, BulpaP, ChevroletJC. Effects of the prone position on gas exchange and hemodynamics in severe acute respiratory distress syndrome. Crit Care Med, 1998; 26(12):1977-1985.
30.
ChiumelloD, CressoniM, RacagniM, LandiL, Li BassiG, PolliF, et al. Effects of thoraco-pelvic supports during prone position in patients with acute lung injury/acute respiratory distress syndrome: a physiological study. Crit Care, 2006; 10(3):R87.
31.
CorpA, ThomasC, AdlamM. The cardiovascular effects of positive-pressure ventilation. BJA Educ, 2021; 21(6):202-209.
32.
RusteM, BitkerL, YonisH, RiadZ, Louf-DurierA, LissondeF, et al. Hemodynamic effects of extended prone position sessions in ARDS. Ann Intensive Care, 2018; 8(1):120.
33.
OtterstadJE, FroelandG, St John SuttonM, HolmeI. Accuracy and reproducibility of biplane two-dimensional echocardiographic measurements of left ventricular dimensions and function. Eur Heart J, 1997; 18(3):507-513.
34.
LangRM, BadanoLP, Mor-AviV, AfilaloJ, ArmstrongA, ErnandeL, et al. Recommendations for cardiac chamber quantification by echocardiography in adults: an update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. J Am Soc Echocardiogr, 2015; 28(1):1-39.e14.