Creation of an idealized nasopharynx geometry for accurate computational fluid dynamics simulations of nasal airflow in patient‐specific models lacking the nasopharynx anatomy
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Guilherme J M Garcia | Dennis O Frank-Ito | Julia S Kimbell | John S Rhee | Azadeh A T Borojeni | J. Kimbell | G. Garcia | J. Rhee | D. Frank-Ito | Azadeh A.T. Borojeni
[1] Tilman Keck,et al. Numerical Simulation of Airflow Patterns and Air Temperature Distribution during Inspiration in a Nose Model with Septal Perforation , 2004, American journal of rhinology.
[2] David Wexler,et al. Aerodynamic effects of inferior turbinate reduction: computational fluid dynamics simulation. , 2005, Archives of otolaryngology--head & neck surgery.
[3] J. Kimbell,et al. Modeling Nasal Physiology Changes due to Septal Perforations , 2012 .
[4] Julia S. Kimbell,et al. Effects of Anatomy and Particle Size on Nasal Sprays and Nebulizers , 2012, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.
[5] Gerhard Rettinger,et al. Numerical simulation of intranasal air flow and temperature after resection of the turbinates. , 2005, Rhinology.
[6] A. Maloney,et al. The efficacy of nasal septal surgery. , 1992, The Journal of otolaryngology.
[7] R. Mösges,et al. 4-Phase-Rhinomanometry (4PR)--basics and practice 2010. , 2010, Rhinology. Supplement.
[8] L. Tanoue. Computed Tomography — An Increasing Source of Radiation Exposure , 2009 .
[9] Purushottam W. Laud,et al. Changes in nasal airflow and heat transfer correlate with symptom improvement after surgery for nasal obstruction. , 2013, Journal of biomechanics.
[10] Harlan M Krumholz,et al. Exposure to low-dose ionizing radiation from medical imaging procedures. , 2009, The New England journal of medicine.
[11] Julia S. Kimbell,et al. Computed nasal resistance compared with patient-reported symptoms in surgically treated nasal airway passages: A preliminary report , 2012, American journal of rhinology & allergy.
[12] H. Kunst,et al. Sub-alar batten grafts as treatment for nasal valve incompetence; description of technique and functional evaluation. , 2006, Rhinology.
[13] Michael G. Stewart,et al. Development and Validation of the Nasal Obstruction Symptom Evaluation (NOSE) Scale1 , 2004, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.
[14] Joel H. Ferziger,et al. Computational methods for fluid dynamics , 1996 .
[15] Purushottam W. Laud,et al. Predicting Postsurgery Nasal Physiology with Computational Modeling , 2014, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.
[16] Guilherme J M Garcia,et al. Perception of Better Nasal Patency Correlates with Increased Mucosal Cooling after Surgery for Nasal Obstruction , 2014, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.
[17] P. Illum. Septoplasty and compensatory inferior turbinate hypertrophy: long-term results after randomized turbinoplasty , 2006, European Archives of Oto-Rhino-Laryngology.
[18] Julia S Kimbell,et al. Role of virtual surgery in preoperative planning: assessing the individual components of functional nasal airway surgery. , 2012, Archives of facial plastic surgery.
[19] Guilherme J M Garcia,et al. Toward personalized nasal surgery using computational fluid dynamics. , 2011, Archives of facial plastic surgery.
[20] E Tammisalo,et al. Development of a compact computed tomographic apparatus for dental use. , 1999, Dento maxillo facial radiology.
[21] G. Rettinger,et al. Impact of Unilateral Sinus Surgery With Resection of the Turbinates by Means of Midfacial Degloving on Nasal Air Conditioning , 2002, The Laryngoscope.
[22] Gerhard Rettinger,et al. Numerical simulation of intranasal airflow after radical sinus surgery. , 2005, American journal of otolaryngology.
[24] G. Garcia,et al. Impact of Middle versus Inferior Total Turbinectomy on Nasal Aerodynamics , 2016, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.
[25] G. Kenyon,et al. Is there objective evidence that septal surgery improves nasal airflow? , 2006, The Journal of laryngology and otology.
[26] A S Wexler,et al. Detailed flow patterns in the nasal cavity. , 2000, Journal of applied physiology.
[27] N. Bhattacharyya,et al. Ambulatory sinus and nasal surgery in the United States: Demographics and perioperative outcomes , 2010, The Laryngoscope.
[28] Cuneyt Sert,et al. Numerical Study of the Aerodynamic Effects of Septoplasty and Partial Lateral Turbinectomy , 2008, The Laryngoscope.
[29] G. Garcia,et al. Identifying patients who may benefit from inferior turbinate reduction using computer simulations , 2015, The Laryngoscope.
[30] Guilherme J M Garcia,et al. Septal Deviation and Nasal Resistance: An Investigation using Virtual Surgery and Computational Fluid Dynamics , 2010, American journal of rhinology & allergy.
[31] P Sukovic,et al. Cone beam computed tomography in craniofacial imaging. , 2003, Orthodontics & craniofacial research.
[32] G. Garcia,et al. The relationship between nasal resistance to airflow and the airspace minimal cross-sectional area. , 2016, Journal of biomechanics.
[33] J. Kimbell,et al. A systematic review of patient-reported nasal obstruction scores: defining normative and symptomatic ranges in surgical patients. , 2014, JAMA facial plastic surgery.
[34] Jeffry D. Schroeter,et al. Dosimetry of nasal uptake of water-soluble and reactive gases: A first study of interhuman variability , 2009, Inhalation toxicology.
[35] H. Dommerby,et al. Long-term results of septoplastic operations. , 1985, ORL; journal for oto-rhino-laryngology and its related specialties.
[36] P. Wesseling. Principles of Computational Fluid Dynamics , 2000 .
[37] Julia S Kimbell,et al. Computed intranasal spray penetration: comparisons before and after nasal surgery , 2013, International forum of allergy & rhinology.