Lung Injury

Hypercapnic Acidosis Attenuates Endotoxin-induced Acute Lung Injury

Nonparametric Statistics / Probability / Animals / Male / Acute respiratory distress syndrome / Nitrogen / American / Acute Lung Injury / Rats / Analysis of Variance / Rat / Survival Rate / Rat Model / Lung Injury / Blood gas analysis / Sensitivity and Specificity / Ischemia–reperfusion / Primary Prevention / Endotoxins / Hypercapnia / Respiratory distress / Pulmonary Gas Exchange / Nitrogen / American / Acute Lung Injury / Rats / Analysis of Variance / Rat / Survival Rate / Rat Model / Lung Injury / Blood gas analysis / Sensitivity and Specificity / Ischemia–reperfusion / Primary Prevention / Endotoxins / Hypercapnia / Respiratory distress / Pulmonary Gas Exchange

Hypercapnic Acidosis Attenuates Endotoxin-induced Acute Lung Injury

Nonparametric Statistics / Probability / Animals / Male / Acute respiratory distress syndrome / Nitrogen / Acute Lung Injury / Rats / Analysis of Variance / Rat / Survival Rate / Rat Model / Lung Injury / Blood gas analysis / Sensitivity and Specificity / Ischemia–reperfusion / Primary Prevention / Endotoxins / Hypercapnia / Respiratory distress / Pulmonary Gas Exchange / Nitrogen / Acute Lung Injury / Rats / Analysis of Variance / Rat / Survival Rate / Rat Model / Lung Injury / Blood gas analysis / Sensitivity and Specificity / Ischemia–reperfusion / Primary Prevention / Endotoxins / Hypercapnia / Respiratory distress / Pulmonary Gas Exchange

Hypercapnic Acidosis Attenuates Lung Injury Induced by Established Bacterial Pneumonia

Anesthesiology / Animals / Male / Lung Diseases / Lung / Clinical Sciences / Rats / Lung Injury / Escherichia Coli Infections / Hypercapnia / Clinical Sciences / Rats / Lung Injury / Escherichia Coli Infections / Hypercapnia

Parasite Burden and CD36-Mediated Sequestration Are Determinants of Acute Lung Injury in an Experimental Malaria Model

Genetics / Microbiology / Immunology / Immune response / Medical Microbiology / Cytokines / Gene expression / Mice / Animals / Gene ontology / Host-parasite interactions / Animal Model / Acute Lung Injury / Lung / Microarray Analysis / Species Specificity / Gene Expression Analysis / Lung Injury / Cerebral Malaria / Plasmodium berghei / Bronchoalveolar lavage / Cytokines / Gene expression / Mice / Animals / Gene ontology / Host-parasite interactions / Animal Model / Acute Lung Injury / Lung / Microarray Analysis / Species Specificity / Gene Expression Analysis / Lung Injury / Cerebral Malaria / Plasmodium berghei / Bronchoalveolar lavage

Apneic Oxygenation Combined With Extracorporeal Arteriovenous Carbon Dioxide Removal Provides Sufficient Gas Exchange in Experimental Lung Injury

Biomedical Engineering / Carbon Dioxide / Animals / Oxygen / Swine / Lung Injury / Pulmonary ventilation / Gas Exchange / Pulmonary Gas Exchange / Lung Injury / Pulmonary ventilation / Gas Exchange / Pulmonary Gas Exchange

Complement deficiency ameliorates cigarette smoke induced lung injury

Immunology / Molecular / Molecular Immunology / Lung Injury
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