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Pathophysiology and genomics of bronchiectasis
Lidia Perea
, Rosa Faner
,
James D. Chalmers
, Oriol Sibila (Lead / Corresponding author)
Respiratory Medicine and Gastroenterology
Research output
:
Contribution to journal
›
Article
›
peer-review
17
Citations (Scopus)
133
Downloads (Pure)
Overview
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Keyphrases
Pathophysiology
100%
Bronchiectasis
100%
Respiratory Disease
16%
Clinical Practice
16%
Chronic Inflammation
16%
Epigenetic Modification
16%
Genomic Approaches
16%
Airway
16%
Vortex
16%
New Therapies
16%
Microbial Diversity
16%
Proteomics Metabolomics
16%
Genomic Applications
16%
Microbiome
16%
Lung Damage
16%
Molecular Insight
16%
Proteome Diversity
16%
Airway Infection
16%
Epigenomics
16%
Patient Stratification
16%
Unknown Cause
16%
Omics Approaches
16%
Chronic Respiratory Diseases
16%
Chronic Airways Disease
16%
Challenges Opportunities
16%
Mucociliary Dysfunction
16%
Systematic Application
16%
Vortex Model
16%
Trained Immunity
16%
Medicine and Dentistry
Pathophysiology
100%
Bronchiectasis
100%
Endotype
50%
Microbiome
33%
Respiratory Disease
16%
Chronic Inflammation
16%
Chronic Obstructive Pulmonary Disease
16%
Innate Immunity
16%
Metabolomics
16%
Respiratory Tract Infection
16%
Tamsulosin
16%
Epigenomics
16%
Chronic Respiratory Tract Disease
16%
Chronic Airway Disease
16%
Epigenetic Modification
16%
Airway Inflammation
16%
Proteomics
16%
Proteome
16%
Biochemistry, Genetics and Molecular Biology
Genomics
100%
Microbiome
50%
Proteome
25%
Innate Immunity
25%
Epigenetics
25%
Epigenomics
25%
Metabolomics
25%
Epigenetic Modification
25%
Tamsulosin
25%
Proteomics
25%
Immunology and Microbiology
Airway
100%
Microbiome
66%
Innate Immune System
33%
Epigenetic Modification
33%
Epigenetics
33%
Proteomics
33%