The reconstruction of the nasal cavity from computed tomography (CT) scans to a computational model was performed in order to (i) analyse the air flow field and (ii) particle dynamics. The scans were converted into MegaWave2 in preparation for processing. The solid modeling program, CATIA combined with the meshing program GAMBIT was then used to establish a model ready for computational fluid dynamics (CFD) analysis. A steady state laminar flow at 7.5 L/min was used to capture the flow field. Complex flow patterns including vortices were found in the nasal valve region. This flow feature enhances the deposition patterns in the anterior region of the cavity. Fibrous particles and low density particles were introduced into the air flow stream...
The breathing region connects the nasal cavity with the outside environmental air where flow is acce...
Micron-sized particle deposition in anatomically realistic models of a rat and human nasal cavity wa...
Based on the CT scanned images, a realistic geometric model from nasal cavity to upper six-generatio...
Effective nasal drug delivery is highly dependent on the delivery of drug from the nasal spray devic...
A human nasal cavity was reconstructed from CT scans to make a Computational Fluid Dynamics (CFD) mo...
CFD computations of particle flows in a human nasal cavity were conducted, using two types of inlet ...
Airflow and particle transport through the nasal cavity was studied using Computational Fluid Dynami...
Knowledge regarding particle deposition processes in the nasal cavity is important in aerosol therap...
This paper summarises current studies related to numerical gas-particle flows in the human nasal cav...
Nasal physiology is dependent on the physical structure of the nose. Individual aspects of the nasal...
Validated computer simulations of the airflow and particle dynamics in human nasal cavities are impo...
Aerosol deposition in the novel, "Carleton-Civic" standardized geometry of the human nasal cavity wa...
Understanding the properties of airflow in the nasal cavity is very important in determining the nas...
A reconstructed nasal cavity from CT-scans. The nasal cavity is in .tin file format. The demographic...
This work aims to assess human nasal blockage by investigating its influence on nasal airflow dynami...
The breathing region connects the nasal cavity with the outside environmental air where flow is acce...
Micron-sized particle deposition in anatomically realistic models of a rat and human nasal cavity wa...
Based on the CT scanned images, a realistic geometric model from nasal cavity to upper six-generatio...
Effective nasal drug delivery is highly dependent on the delivery of drug from the nasal spray devic...
A human nasal cavity was reconstructed from CT scans to make a Computational Fluid Dynamics (CFD) mo...
CFD computations of particle flows in a human nasal cavity were conducted, using two types of inlet ...
Airflow and particle transport through the nasal cavity was studied using Computational Fluid Dynami...
Knowledge regarding particle deposition processes in the nasal cavity is important in aerosol therap...
This paper summarises current studies related to numerical gas-particle flows in the human nasal cav...
Nasal physiology is dependent on the physical structure of the nose. Individual aspects of the nasal...
Validated computer simulations of the airflow and particle dynamics in human nasal cavities are impo...
Aerosol deposition in the novel, "Carleton-Civic" standardized geometry of the human nasal cavity wa...
Understanding the properties of airflow in the nasal cavity is very important in determining the nas...
A reconstructed nasal cavity from CT-scans. The nasal cavity is in .tin file format. The demographic...
This work aims to assess human nasal blockage by investigating its influence on nasal airflow dynami...
The breathing region connects the nasal cavity with the outside environmental air where flow is acce...
Micron-sized particle deposition in anatomically realistic models of a rat and human nasal cavity wa...
Based on the CT scanned images, a realistic geometric model from nasal cavity to upper six-generatio...