The human lung is protected against aspirated infectious and toxic agents by a thin liquid layer lining the interior of the airways. This airway surface liquid is a bilayer composed of a viscoelastic mucus layer supported by a fluid film known as the periciliary liquid. The viscoelastic behavior of the mucus layer is principally due to long-chain polymers known as mucins. The airway surface liquid is cleared from the lung by ciliary transport, surface tension gradients, and airflow shear forces. This work presents a multiscale model of the effect of airflow shear forces, as exerted by tidal breathing and cough, upon clearance. The composition of the mucus layer is complex and variable in time. To avoid the restrictions imposed by adopting a...
Airway surface liquid is comprised of mucus and an underlying, watery periciliary liquid (PCL). In c...
A multi-mode nonlinear constitutive model for mucus is constructed directly from micro- and macro-rh...
In this study three-dimensional (3D) numerical simulation of mucociliary clearance from the lung has...
The human lung is protected against aspirated infectious and toxic agents by a thin liquid layer lin...
Mathematical modelling of the fluid mechanics of mucociliary clearance (MCC) is reviewed and future ...
The airways of the human respiratory system are covered by a protective layer, which is known as air...
Mathematical modelling of the fluid mechanics of mucociliary clearance (MCC) is reviewed and future ...
A new mathematical model of the transport of mucus and periciliary liquid (PCL) in the airways by ci...
This study is concerned with reconciling theoretical modelling of the fluid flow in the airway surfa...
Diseases of the lung are some of the most common and deadly in the world, accounting for 4 of the to...
A new mathematical model of the transport of mucus and periciliary liquid (PCL) in the airways by ci...
Numerous infectious particles such as bacteria and pathogens are deposited on the airway surface of ...
Airway mucus is difficult to clear and to improve lung function clearance of mucus is necessary. The...
Modeling the flow of fluid in the lungs, even under baseline healthy conditions, presents many chall...
The pulmonary airway surface liquid layer is comprised of two components: 1) inhaled pathogens that ...
Airway surface liquid is comprised of mucus and an underlying, watery periciliary liquid (PCL). In c...
A multi-mode nonlinear constitutive model for mucus is constructed directly from micro- and macro-rh...
In this study three-dimensional (3D) numerical simulation of mucociliary clearance from the lung has...
The human lung is protected against aspirated infectious and toxic agents by a thin liquid layer lin...
Mathematical modelling of the fluid mechanics of mucociliary clearance (MCC) is reviewed and future ...
The airways of the human respiratory system are covered by a protective layer, which is known as air...
Mathematical modelling of the fluid mechanics of mucociliary clearance (MCC) is reviewed and future ...
A new mathematical model of the transport of mucus and periciliary liquid (PCL) in the airways by ci...
This study is concerned with reconciling theoretical modelling of the fluid flow in the airway surfa...
Diseases of the lung are some of the most common and deadly in the world, accounting for 4 of the to...
A new mathematical model of the transport of mucus and periciliary liquid (PCL) in the airways by ci...
Numerous infectious particles such as bacteria and pathogens are deposited on the airway surface of ...
Airway mucus is difficult to clear and to improve lung function clearance of mucus is necessary. The...
Modeling the flow of fluid in the lungs, even under baseline healthy conditions, presents many chall...
The pulmonary airway surface liquid layer is comprised of two components: 1) inhaled pathogens that ...
Airway surface liquid is comprised of mucus and an underlying, watery periciliary liquid (PCL). In c...
A multi-mode nonlinear constitutive model for mucus is constructed directly from micro- and macro-rh...
In this study three-dimensional (3D) numerical simulation of mucociliary clearance from the lung has...