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Elastocapillary network model of inhalation
Jean François Louf
, Felix Kratz
, Sujit S. Datta
Chemical & Biological Engineering
Princeton Materials Institute
Research output
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Contribution to journal
›
Article
›
peer-review
3
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Scopus citations
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Keyphrases
Airflow
16%
Airway Wall
16%
Asthma
16%
Biomechanical Parameters
16%
Biomechanical Properties
16%
Branched Network
16%
Breathing Curve
16%
Breathing Dynamics
16%
Chronic Obstructive Pulmonary Disease
16%
Chronic Obstructive Pulmonary Emphysema
16%
Complex Interplay
16%
Computational Model
16%
COVID-19
16%
Cystic Fibrosis
16%
Elastocapillary
100%
Flexible Cylinder
16%
Inhalation
100%
Lung
100%
Lung Capacity
16%
Lung Tissue
16%
Mechanical Properties
16%
Mucus
16%
Muscle Contraction
33%
Network Model
100%
Respiratory Disease
16%
Respiratory Distress
16%
Simple Process
16%
Spatio-temporal Features
16%
Stiffness Characteristics
16%
Surface Tension
16%
Thoracic Cavity
16%
Thorax
16%
Viscosity
16%
Wall Stiffness
16%
Medicine and Dentistry
Airflow
14%
Asthma
14%
Breathing
28%
Breathing Mechanics
14%
Chest
14%
Chronic Obstructive Pulmonary Disease
14%
COVID-19
14%
Cystic Fibrosis
14%
Diseases
14%
Interfacial Tension
14%
Lung
100%
Lung Capacity
14%
Lung Emphysema
14%
Muscle Contraction
28%
Respiratory Disease
14%
Respiratory Distress
14%
Secretion (Process)
14%
Tension Surface
14%
Thoracic Cavity
14%