Determining the impact of inter-subject variability on airflow pattern and nanoparticle deposition in the human respiratory system is necessary to generate population-representative models, useful for several biomedical engineering applications. Thus, the overall research objective is to quantitatively correlate geometric parameters and coupled transport characteristics of air, vapor, and nanoparticles. Focusing on identifying morphological parameters that significantly influence airflow field and nanoparticle transport, an experimentally validated computational fluid-particle dynamics (CFPD) model was employed to simulate airflow pattern in three human lung-airway configurations. The numerical results will be used to generate guidelines to...
While the benefits and possibilities of nanotechnology have received considerable attention, the a...
Knowledge of particle deposition is important in clinical settings or when discussing environmental ...
© 2017 Elsevier Ltd The major problem in understanding the therapeutically targeted drug delivery sy...
Determining the impact of inter-subject variability on airflow pattern and nanoparticle deposition i...
An area identified as having a high priority by the National Research Council (NRC 1998) relating to...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. The understanding of complex inhalation an...
This thesis deals with simulation of particles transport along human airways to predict the particle...
The understanding of complex inhalation and transport processes of pollutant particles through the h...
The understanding of complex inhalation and transport processes of pollutant particles through the h...
Aerosol transport and deposition in human lungs has attracted considerable attention in the past few...
While the benefits and possibilities of nanotechnology have received considerable attention, the a...
Highlights - Advanced numerical model for micro-particle TD in the human lung is developed. - This s...
Highlights - Advanced numerical model for micro-particle TD in the human lung is developed. - This s...
While the benefits and possibilities of nanotechnology have received considerable attention, the a...
Highlights - Advanced numerical model for micro-particle TD in the human lung is developed. - This s...
While the benefits and possibilities of nanotechnology have received considerable attention, the a...
Knowledge of particle deposition is important in clinical settings or when discussing environmental ...
© 2017 Elsevier Ltd The major problem in understanding the therapeutically targeted drug delivery sy...
Determining the impact of inter-subject variability on airflow pattern and nanoparticle deposition i...
An area identified as having a high priority by the National Research Council (NRC 1998) relating to...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. The understanding of complex inhalation an...
This thesis deals with simulation of particles transport along human airways to predict the particle...
The understanding of complex inhalation and transport processes of pollutant particles through the h...
The understanding of complex inhalation and transport processes of pollutant particles through the h...
Aerosol transport and deposition in human lungs has attracted considerable attention in the past few...
While the benefits and possibilities of nanotechnology have received considerable attention, the a...
Highlights - Advanced numerical model for micro-particle TD in the human lung is developed. - This s...
Highlights - Advanced numerical model for micro-particle TD in the human lung is developed. - This s...
While the benefits and possibilities of nanotechnology have received considerable attention, the a...
Highlights - Advanced numerical model for micro-particle TD in the human lung is developed. - This s...
While the benefits and possibilities of nanotechnology have received considerable attention, the a...
Knowledge of particle deposition is important in clinical settings or when discussing environmental ...
© 2017 Elsevier Ltd The major problem in understanding the therapeutically targeted drug delivery sy...