Near-Apneic Ventilation Decreases Lung Injury and Fibroproliferation in an ARDS Model with ECMO
Journal
American Journal of Respiratory and Critical Care Medicine
ISSN
1073-449X
1535-4970
Date Issued
2019
Author(s)
Joaquin Araos
Leyla Alegria
Patricio Garcia
Pablo Cruces
Dagoberto Soto
Benjamín Erranz
Macarena Amthauer
Tatiana Salomon
Tania Medina
Felipe Rodriguez
Pedro Ayala
Gisella R. Borzone
Manuel Meneses
Felipe Damiani
Jaime Retamal
Rodrigo Cornejo
Guillermo Bugedo
Alejandro Bruhn
Type
Resource Types::text::journal::journal article
URL Institutional Repository
Cite this document
Araos, J., Alegria, L., Garcia, P., Cruces, P., Soto, D., Erranz, B., Amthauer, M., Salomon, T., Medina, T., Rodriguez, F., Ayala, P., Borzone, G. R., Meneses, M., Damiani, F., Retamal, J., Cornejo, R., Bugedo, G., & Bruhn, A. (2019). Near-apneic ventilation decreases lung injury and fibroproliferation in an acute respiratory distress syndrome model with extracorporeal membrane oxygenation. American Journal of Respiratory and Critical Care Medicine, 199(5), 603-612. https://doi.org/10.1164/rccm.201805-0869OC
Subjects
acute respiratory distress syndrome
;
extracorporeal membrane oxygenation
;
mechanical ventilation
;
myofibroblast
;
ventilator-induced lung injury
;
animals
;
disease models, animal
;
extracorporeal membrane oxygenation
;
hemodynamics
;
pulmonary fibrosis
;
respiration, artificial
;
respiratory distress syndrome, adult
;
respiratory physiological phenomena
;
swine
;
ventilator-induced lung injury
;
alpha smooth muscle actin
;
aspartate aminotransferase
;
collagen type 1
;
collagen type 3
;
creatinine
;
gelatinase a
;
gelatinase b
;
noradrenalin
;
procollagen
;
procollagen iii
;
sodium chloride
;
unclassified drug
;
acute lung injury
;
adult respiratory distress syndrome
;
article
;
artificial ventilation
;
aspartate aminotransferase blood level
;
breathing rate
;
controlled study
;
creatinine blood level
;
extracorporeal oxygenation
;
fluid therapy
;
heart rate
;
hypotension
;
immunohistochemistry
;
injury severity
;
kidney failure
;
liver failure
;
lung minute volume
;
mrna expression level
;
myofibroblast
;
near apneic ventilation
;
nonhuman
;
oxygenation
;
porcine model
;
positive end expiratory pressure
;
priority journal
;
pulmonary hypertension
;
adult respiratory distress syndrome
;
adverse event
;
animal
;
complication
;
disease model
;
hemodynamics
;
lung fibrosis
;
pig
;
procedures
;
respiratory function
;
ventilator induced lung injury