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Perioperative Pulmonary Atelectasis: Part I. Biology and Mechanisms
Congli Zeng
, David Lagier
, Jae Woo Lee
,
Marcos F. Vidal Melo
Research output
:
Contribution to journal
›
Review article
›
peer-review
111
Scopus citations
Overview
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Keyphrases
Lung
100%
Pulmonary Atelectasis
100%
Atelectasis
66%
Inflammation
33%
Lung Damage
33%
Lung Injury
33%
Susceptibility to Infection
33%
Blood Oxygenation
33%
Mechanical Force
33%
Lung Tissue
33%
Clinical Management
33%
Pathophysiologic Mechanisms
33%
Protein Permeability
33%
Mechanical Ventilation
33%
Lung Compliance
33%
Biologic Response
33%
Immune Dysfunction
33%
Perioperative Period
33%
Surface Tension
33%
Lung Clearance
33%
Infection Factors
33%
Alveolar Pressure
33%
Potential Loss
33%
Force Propagation
33%
Alveolar-capillary Barrier
33%
Overdistension
33%
Immune Damage
33%
Pleural Pressure
33%
Damage Concentration
33%
Gas-liquid Interface
33%
Parenchymal Tethering
33%
Medicine and Dentistry
Atelectasis
100%
Lung
100%
Infection
25%
Blood Oxygenation
25%
Capillary
25%
Clinical Management
25%
Artificial Respiration
25%
Lung Compliance
25%
Perioperative Period
25%
Immune Disorder
25%
Lung Fluid
25%