A novel method to generate dynamic boundary conditions for airway CFD by mapping upper airway movement with non-rigid registration of dynamic and static MRI

Author:

Bates Alister J.123ORCID,Schuh Andreas4,McConnell Keith1,Williams Brynne M.2,Lanier J. Matthew2,Willmering Matthew M.1ORCID,Woods Jason C.1567,Fleck Robert J.58ORCID,Dumoulin Charles L.256,Amin Raouf S.16

Affiliation:

1. Division of Pulmonary Medicine; Cincinnati Children's Hospital Medical Center; Cincinnati OH USA

2. Imaging Research Center; Cincinnati Children's Hospital Medical Center; Cincinnati OH USA

3. Department of Bioengineering; Imperial College London; UK

4. Department of Computing; Imperial College London; UK

5. Department of Radiology; Cincinnati Children's Hospital Medical Center; Cincinnati OH USA

6. Department of Pediatrics; University of Cincinnati; Cincinnati OH USA

7. Departments of Radiology and Physics; University of Cincinnati; Cincinnati OH USA

8. Department of Radiology; University of Cincinnati; Cincinnati OH USA

Funder

Imperial College London

Publisher

Wiley

Subject

Applied Mathematics,Computational Theory and Mathematics,Molecular Biology,Modelling and Simulation,Biomedical Engineering,Software

Reference66 articles.

1. Dynamics of airflow in a short inhalation;Bates;J The Royal Soc Interf,2014

2. Computational flow studies in a subject-specific human upper airway using a one-equation turbulence model. Influence of the Nasal Cavity;Saksono;Int J Numer Methods Eng,2011

3. Numerical prediction of heat transfer patterns in a subject-specific human upper airway;Saksono;J Heat Transfer,2012

4. A novel modelling approach to energy transport in a respiratory system;Nithiarasu;Int J Numeric Meth Biomedic Eng,2017

5. Changes in nasal airflow and heat transfer correlate with symptom improvement after surgery for nasal obstruction;Kimbell;J Biomech,2013

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