TY - JOUR
T1 - Ventilatory associated barotrauma in COVID-19 patients
T2 - A multicenter observational case control study (COVI-MIX-study)
AU - the Italian COVI-MIX Study Group
AU - Vetrugno, Luigi
AU - Castaldo, Nadia
AU - Fantin, Alberto
AU - Deana, Cristian
AU - Cortegiani, Andrea
AU - Longhini, Federico
AU - Forfori, Francesco
AU - Cammarota, Gianmaria
AU - Grieco, Domenico Luca
AU - Isola, Miriam
AU - Navalesi, Paolo
AU - Maggiore, Salvatore Maurizio
AU - Bassetti, Matteo
AU - Chetta, Alfredo
AU - Confalonieri, Marco
AU - De Martino, Maria
AU - Ferrari, Giovanni
AU - Francisi, Daniela
AU - Luzzati, Roberto
AU - Meini, Simone
AU - Scozzafava, Mariano
AU - Sozio, Emanuela
AU - Tascini, Carlo
AU - Bassi, Flavio
AU - Patruno, Vincenzo
AU - De Robertis, Edoardo
AU - Aldieri, Chiara
AU - Ball, Lorenzo
AU - Baratella, Elisa
AU - Bartoletti, Michele
AU - Boscolo, Annalisa
AU - Burgazzi, Barbara
AU - Catalanotti, Vito
AU - Confalonieri, Paola
AU - Corcione, Silvia
AU - De Rosa, Francesco Giuseppe
AU - De Simoni, Alessandro
AU - Bono, Valerio Del
AU - Tria, Roberta Di
AU - Forlani, Sara
AU - Giacobbe, Daniele Roberto
AU - Granozzi, Bianca
AU - Labate, Laura
AU - Lococo, Sara
AU - Lupia, Tommaso
AU - Matellon, Carola
AU - Mehrabi, Sara
AU - Morosi, Sabrina
AU - Mongodi, Silvia
AU - Mura, Maddalena
N1 - Publisher Copyright:
© 2022 Sociedade Portuguesa de Pneumologia
PY - 2023/11/1
Y1 - 2023/11/1
N2 - Background: The risk of barotrauma associated with different types of ventilatory support is unclear in COVID-19 patients. The primary aim of this study was to evaluate the effect of the different respiratory support strategies on barotrauma occurrence; we also sought to determine the frequency of barotrauma and the clinical characteristics of the patients who experienced this complication. Methods: This multicentre retrospective case-control study from 1 March 2020 to 28 February 2021 included COVID-19 patients who experienced barotrauma during hospital stay. They were matched with controls in a 1:1 ratio for the same admission period in the same ward of treatment. Univariable and multivariable logistic regression (OR) were performed to explore which factors were associated with barotrauma and in-hospital death. Results: We included 200 cases and 200 controls. Invasive mechanical ventilation was used in 39.3% of patients in the barotrauma group, and in 20.1% of controls (p<0.001). Receiving non-invasive ventilation (C-PAP/PSV) instead of conventional oxygen therapy (COT) increased the risk of barotrauma (OR 5.04, 95% CI 2.30 - 11.08, p<0.001), similarly for invasive mechanical ventilation (OR 6.24, 95% CI 2.86-13.60, p<0.001). High Flow Nasal Oxygen (HFNO), compared with COT, did not significantly increase the risk of barotrauma. Barotrauma frequency occurred in 1.00% [95% CI 0.88-1.16] of patients; these were older (p=0.022) and more frequently immunosuppressed (p=0.013). Barotrauma was shown to be an independent risk for death (OR 5.32, 95% CI 2.82-10.03, p<0.001). Conclusions: C-PAP/PSV compared with COT or HFNO increased the risk of barotrauma; otherwise HFNO did not. Barotrauma was recorded in 1.00% of patients, affecting mainly patients with more severe COVID-19 disease. Barotrauma was independently associated with mortality. Trial registration: this case-control study was prospectively registered in clinicaltrial.gov as NCT04897152 (on 21 May 2021).
AB - Background: The risk of barotrauma associated with different types of ventilatory support is unclear in COVID-19 patients. The primary aim of this study was to evaluate the effect of the different respiratory support strategies on barotrauma occurrence; we also sought to determine the frequency of barotrauma and the clinical characteristics of the patients who experienced this complication. Methods: This multicentre retrospective case-control study from 1 March 2020 to 28 February 2021 included COVID-19 patients who experienced barotrauma during hospital stay. They were matched with controls in a 1:1 ratio for the same admission period in the same ward of treatment. Univariable and multivariable logistic regression (OR) were performed to explore which factors were associated with barotrauma and in-hospital death. Results: We included 200 cases and 200 controls. Invasive mechanical ventilation was used in 39.3% of patients in the barotrauma group, and in 20.1% of controls (p<0.001). Receiving non-invasive ventilation (C-PAP/PSV) instead of conventional oxygen therapy (COT) increased the risk of barotrauma (OR 5.04, 95% CI 2.30 - 11.08, p<0.001), similarly for invasive mechanical ventilation (OR 6.24, 95% CI 2.86-13.60, p<0.001). High Flow Nasal Oxygen (HFNO), compared with COT, did not significantly increase the risk of barotrauma. Barotrauma frequency occurred in 1.00% [95% CI 0.88-1.16] of patients; these were older (p=0.022) and more frequently immunosuppressed (p=0.013). Barotrauma was shown to be an independent risk for death (OR 5.32, 95% CI 2.82-10.03, p<0.001). Conclusions: C-PAP/PSV compared with COT or HFNO increased the risk of barotrauma; otherwise HFNO did not. Barotrauma was recorded in 1.00% of patients, affecting mainly patients with more severe COVID-19 disease. Barotrauma was independently associated with mortality. Trial registration: this case-control study was prospectively registered in clinicaltrial.gov as NCT04897152 (on 21 May 2021).
KW - Acute respiratory failure
KW - Barotrauma
KW - COVID-19
KW - High flow nasal cannula
KW - Invasive mechanical ventilation
KW - Pneumothorax
UR - https://www.scopus.com/pages/publications/85146790776
U2 - 10.1016/j.pulmoe.2022.11.002
DO - 10.1016/j.pulmoe.2022.11.002
M3 - Article
SN - 2531-0429
VL - 29
SP - 457
EP - 468
JO - Pulmonology
JF - Pulmonology
IS - 6
ER -