DellamonicaJ, LerolleN, SargentiniC, HubertS, BeduneauG, Di MarcoF, et al. Effect of different seated positions on lung volume and oxygenation in acute respiratory distress syndrome. Intensive Care Med, 2013; 39(6):1121–1127.
2.
MezidiM, GuérinC. Effect of body position and inclination in supine and prone position on respiratory mechanics in acute respiratory distress syndrome. Intensive Care Med, 2019; 45(2):292–294.
3.
RichardJ-CM, MaggioreSM, ManceboJ, LemaireF, JonsonB, BrochardL. Effects of vertical positioning on gas exchange and lung volumes in acute respiratory distress syndrome. Intensive Care Med, 2006; 32(10):1623–1626.
4.
SpoonerAJ, CorleyA, SharpeNA, BarnettAG, CaruanaLR, HammondNE, FraserJR. Head-of-bed elevation improves end-expiratory lung volumes in mechanically ventilated subjects: a prospective observational study. Respir Care, 2014; 59(10):1583–1589.
5.
AdlerA, AmatoMB, ArnoldJH, BayfordR, BodensteinM, BöhmSH, et al. Whither lung EIT: where are we, where do we want to go and what do we need to get there?. Physiol Meas, 2012; 33(5):679–694.
6.
The ARDS Definition Task Force; RanieriVM, RubenfeldGD, ThompsonBT, FergusonND, CaldwellE, et al. Acute respiratory distress syndrome: the Berlin Definition. JAMA, 2012; 307(23):2526–2533.
7.
AkoumianakiE, MaggioreSM, ValenzaF, BellaniG, JubranA, LoringSH, et al. PLUG Working Group (Acute Respiratory Failure Section of the European Society of Intensive Care Medicine). The application of esophageal pressure measurement in patients with respiratory failure. Am J Respir Crit Care Med, 2014; 189(5):520–531.
8.
YoshidaT, AmatoMBP, GriecoDL, ChenL, LimaCAS, RoldanR, et al. Esophageal manometry and regional transpulmonary pressure in lung injury. Am J Respir Crit Care Med, 2018; 197(8):1018–1026.
9.
YoshidaT, PirainoT, LimaCAS, KavanaghBP, AmatoMBP, BrochardL. Regional ventilation displayed by electrical impedance tomography as an incentive to decrease positive end-expiratory pressure. Am J Respir Crit Care Med, 2019; 200(7):933–937.
10.
ZhaoZ, MöllerK, SteinmannD, FrerichsI, GuttmannJ. Evaluation of an electrical impedance tomography-based global inhomogeneity index for pulmonary ventilation distribution. Intensive Care Med, 2009; 35(11):1900–1906.
MarrazzoF, SpinaS, ForliniC, GuarnieriM, GiudiciR, BassiG, et al. Effects of trunk inclination on respiratory mechanics in patients with COVID-19–associated acute respiratory distress syndrome: let's always report the angle!. Am J Respir Crit Care Med, 2022; 205(5):582–584.
13.
MarrazzoF, SpinaS, ZadekF, ForliniC, BassiG, GiudiciR, et al. PEEP titration is markedly affected by trunk inclination in mechanically ventilated patients with COVID-19 ARDS: a physiologic, cross-over study. J Clin Med, 2023; 12(12):3914.
14.
TerragniPP, RosbochG, TealdiA, CornoE, MenaldoE, DaviniO, et al. Tidal hyperinflation during low tidal volume ventilation in acute respiratory distress syndrome. Am J Respir Crit Care Med, 2007; 175(2):160–166.
15.
HellyerTP, EwanV, WilsonP, SimpsonAJ. The Intensive Care Society recommended bundle of interventions for the prevention of ventilator-associated pneumonia. J Intensive Care Soc, 2016; 17(3):238–243.