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Mechanisms of repair and remodeling following acute lung injury
David H. Ingbar
Pulmonary, Allergy, Critical Care and Sleep Medicine
Consortium on Law and Values in Health, Environment, and the Life Sciences
Masonic Cancer Center
Research output
:
Contribution to journal
›
Article
›
peer-review
52
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Scopus citations
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Keyphrases
Survivors
100%
Acute Lung Injury
100%
Pulmonary Function
66%
Inflammation
33%
Mechanical Ventilation
33%
Fibrosis
33%
Clinical Course
33%
Intervention Studies
33%
Treatment Strategy
33%
Posttraumatic Stress
33%
Physiologic
33%
Functional Outcome
33%
Multiple Centers
33%
National Registry
33%
Repair Mechanism
33%
Cellular Basis
33%
Biological Basis
33%
Recovery Process
33%
Histologic
33%
Management Challenges
33%
Minute Ventilation
33%
Hyperoxia
33%
Lung Repair
33%
Biochemical Parameters
33%
Cooperative Effort
33%
Patient Database
33%
Surfactant Replacement Therapy
33%
Repair Stage
33%
Alveolar Edema
33%
Late Repair
33%
Late Recovery
33%
Late Outcomes
33%
Follow-up Data
33%
Arterial Oxygen Partial Pressure
33%
Patient Specimens
33%
Autopsy Specimens
33%
Medicine and Dentistry
Acute Respiratory Distress Syndrome
100%
Acute Lung Injury
100%
Lung Function
33%
Morphology
16%
Lung
16%
Cooperation
16%
Disease Course
16%
Substitution Therapy
16%
Fibrosis
16%
Edema
16%
Intervention Trial
16%
Artificial Respiration
16%
Respiratory Minute Volume
16%
Inflammation
16%
Hyperoxia
16%
Surfactant
16%
Long-Term Outcome
16%
Immunology and Microbiology
Lung
100%
Lung Function
66%
Dioxygen
66%
Inflammation
33%
Morphology
33%
Hyperoxia
33%
Lung Minute Volume
33%
Partial Pressure
33%