Ultrafine particle deposition studies in the human nasal cavity regions often omit the paranasal sinus regions. Because of the highly diffusive nature of nanoparticles, it is conjectured that deposition by diffusion may occur in the paranasal sinuses, which may affect the residual deposition fraction that leaves the nasal cavity. Two identical CFD models of a human nasal cavity, one with sinuses and one without, were reconstructed from CT-scans to determine the uptake of ultrafine particles. In general, there was little flow passing through the paranasal sinuses. However, flow patterns revealed that some streamlines reached the upper nasal cavity near the olfactory regions. These flow paths promote particle deposition in the sphenoid and et...
Purpose Intranasal deposition of aerosols is often studied using in vitro nasal cavity models. Howev...
Aerosol deposition in the novel, "Carleton-Civic" standardized geometry of the human nasal cavity wa...
Purpose: Intranasal deposition of aerosols is often studied using in vitro nasal cavity models. Howe...
Knowledge regarding particle deposition processes in the nasal cavity is important in aerosol therap...
The breathing region connects the nasal cavity with the outside environmental air where flow is acce...
A nasal-sinus cavity model was created in order to determine if any nanoparticles (NPs) would deposi...
Validated computer simulations of the airflow and particle dynamics in human nasal cavities are impo...
CFD computations of particle flows in a human nasal cavity were conducted, using two types of inlet ...
A human nasal cavity was reconstructed from CT scans to make a Computational Fluid Dynamics (CFD) mo...
Micron-sized particle deposition in anatomically realistic models of a rat and human nasal cavity wa...
This paper summarises current studies related to numerical gas-particle flows in the human nasal cav...
The reconstruction of the nasal cavity from computed tomography (CT) scans to a computational model ...
Olfactory pathway, susceptible for direct translocation of inhaled nanoparticles into the brain, has...
International audiencePurposeIntranasal deposition of aerosols is often studied using in vitro nasal...
Nasal physiology is dependent on the physical structure of the nose. Individual aspects of the nasal...
Purpose Intranasal deposition of aerosols is often studied using in vitro nasal cavity models. Howev...
Aerosol deposition in the novel, "Carleton-Civic" standardized geometry of the human nasal cavity wa...
Purpose: Intranasal deposition of aerosols is often studied using in vitro nasal cavity models. Howe...
Knowledge regarding particle deposition processes in the nasal cavity is important in aerosol therap...
The breathing region connects the nasal cavity with the outside environmental air where flow is acce...
A nasal-sinus cavity model was created in order to determine if any nanoparticles (NPs) would deposi...
Validated computer simulations of the airflow and particle dynamics in human nasal cavities are impo...
CFD computations of particle flows in a human nasal cavity were conducted, using two types of inlet ...
A human nasal cavity was reconstructed from CT scans to make a Computational Fluid Dynamics (CFD) mo...
Micron-sized particle deposition in anatomically realistic models of a rat and human nasal cavity wa...
This paper summarises current studies related to numerical gas-particle flows in the human nasal cav...
The reconstruction of the nasal cavity from computed tomography (CT) scans to a computational model ...
Olfactory pathway, susceptible for direct translocation of inhaled nanoparticles into the brain, has...
International audiencePurposeIntranasal deposition of aerosols is often studied using in vitro nasal...
Nasal physiology is dependent on the physical structure of the nose. Individual aspects of the nasal...
Purpose Intranasal deposition of aerosols is often studied using in vitro nasal cavity models. Howev...
Aerosol deposition in the novel, "Carleton-Civic" standardized geometry of the human nasal cavity wa...
Purpose: Intranasal deposition of aerosols is often studied using in vitro nasal cavity models. Howe...