All Relations between cfd and nasal

Publication Sentence Publish Date Extraction Date Species
De Yun Wang, Heow Peuh Lee, Bruce R Gordo. Impacts of fluid dynamics simulation in study of nasal airflow physiology and pathophysiology in realistic human three-dimensional nose models. Clinical and experimental otorhinolaryngology. vol 5. issue 4. 2012-12-04. PMID:23205221. as compared to rhinomanometry and acoustic rhinometry, which provide quantitative information only of nasal airflow, resistance, and cross sectional areas, cfd enables additional measurements of airflow passing through the nasal cavity that help visualize the physiologic impact of alterations in intranasal structures. 2012-12-04 2023-08-12 human
De Yun Wang, Heow Peuh Lee, Bruce R Gordo. Impacts of fluid dynamics simulation in study of nasal airflow physiology and pathophysiology in realistic human three-dimensional nose models. Clinical and experimental otorhinolaryngology. vol 5. issue 4. 2012-12-04. PMID:23205221. with recent improvements in cfd technology and computing power, there is a promising future for cfd to become a useful tool in planning, predicting, and evaluating outcomes of nasal surgery. 2012-12-04 2023-08-12 human
De Yun Wang, Heow Peuh Lee, Bruce R Gordo. Impacts of fluid dynamics simulation in study of nasal airflow physiology and pathophysiology in realistic human three-dimensional nose models. Clinical and experimental otorhinolaryngology. vol 5. issue 4. 2012-12-04. PMID:23205221. this review discusses the possibilities and potential impacts, as well as technical limitations, of using cfd simulation to better understand nasal airflow physiology. 2012-12-04 2023-08-12 human
Julia S Kimbell, Guilherme J M Garcia, Dennis O Frank, Daniel E Cannon, Sachin S Pawar, John S Rhe. Computed nasal resistance compared with patient-reported symptoms in surgically treated nasal airway passages: a preliminary report. American journal of rhinology & allergy. vol 26. issue 3. 2012-10-05. PMID:22643935. the goal of this study was to develop methods for comparing nasal resistance computed by computational fluid dynamics (cfd) models with patient-reported symptoms of nao using early data from a 4-year prospective study. 2012-10-05 2023-08-12 Not clear
P Worth Longest, Landon T Holbroo. In silico models of aerosol delivery to the respiratory tract - development and applications. Advanced drug delivery reviews. vol 64. issue 4. 2012-08-02. PMID:21640772. the review of cfd models is organized into sections covering transport and deposition within the inhaler device, the extrathoracic (oral and nasal) region, conducting airways, and alveolar space. 2012-08-02 2023-08-12 Not clear
Jie Tan, Demin Han, Jie Wang, Ting Liu, Tong Wang, Hongrui Zang, Yunchuan Li, Xiangdong Wan. Numerical simulation of normal nasal cavity airflow in Chinese adult: a computational flow dynamics model. European archives of oto-rhino-laryngology : official journal of the European Federation of Oto-Rhino-Laryngological Societies (EUFOS) : affiliated with the German Society for Oto-Rhino-Laryngology - Head and Neck Surgery. vol 269. issue 3. 2012-07-10. PMID:21938528. our purpose is to simulate the airflow inside the healthy chinese nose with normal nasal structure and function by computational fluid dynamics (cfd) method and to analyze the relationship between the airflow and physiological function. 2012-07-10 2023-08-12 Not clear
Jie Tan, Demin Han, Jie Wang, Ting Liu, Tong Wang, Hongrui Zang, Yunchuan Li, Xiangdong Wan. Numerical simulation of normal nasal cavity airflow in Chinese adult: a computational flow dynamics model. European archives of oto-rhino-laryngology : official journal of the European Federation of Oto-Rhino-Laryngological Societies (EUFOS) : affiliated with the German Society for Oto-Rhino-Laryngology - Head and Neck Surgery. vol 269. issue 3. 2012-07-10. PMID:21938528. the data collected in this presentation validates the effectiveness of cfd simulation in the study of airflow in the nasal cavity. 2012-07-10 2023-08-12 Not clear
Jie Tan, Demin Han, Jie Wang, Ting Liu, Tong Wang, Hongrui Zang, Yunchuan Li, Xiangdong Wan. Numerical simulation of normal nasal cavity airflow in Chinese adult: a computational flow dynamics model. European archives of oto-rhino-laryngology : official journal of the European Federation of Oto-Rhino-Laryngological Societies (EUFOS) : affiliated with the German Society for Oto-Rhino-Laryngology - Head and Neck Surgery. vol 269. issue 3. 2012-07-10. PMID:21938528. cfd may thus also be used to study nasal airflow changes resulting from abnormal nasal structure and nasal diseases. 2012-07-10 2023-08-12 Not clear
Xiao Bing Chen, Heow Pueh Lee, Vincent Fook Hin Chong, De Yun Wan. Aerodynamic characteristics inside the rhino-sinonasal cavity after functional endoscopic sinus surgery. American journal of rhinology & allergy. vol 25. issue 6. 2012-05-09. PMID:22185741. the aim of this study was to evaluate effects of functional endoscopic sinus surgery (fess) on transient nasal aerodynamic flow patterns using computational fluid dynamics (cfd) simulations. 2012-05-09 2023-08-12 Not clear
John S Rhee, Sachin S Pawar, Guilherme J M Garcia, Julia S Kimbel. Toward personalized nasal surgery using computational fluid dynamics. Archives of facial plastic surgery. vol 13. issue 5. 2012-01-18. PMID:21502467. to evaluate whether virtual surgery performed on 3-dimensional (3d) nasal airway models can predict postsurgical, biophysical parameters obtained by computational fluid dynamics (cfd). 2012-01-18 2023-08-12 Not clear
Xiao Bing Chen, Heow Pueh Lee, Vincent Fook Hin Chong, De Yun Wan. Assessments of nasal bone fracture effects on nasal airflow: A computational fluid dynamics study. American journal of rhinology & allergy. vol 25. issue 1. 2011-11-28. PMID:21711975. the aim of this study was to evaluate effects of nasal bone fractures on nasal aerodynamic flow patterns using computational fluid dynamics (cfd) simulations. 2011-11-28 2023-08-12 Not clear
X B Chen, S C Leong, H P Lee, V F H Chong, D Y Wan. Aerodynamic effects of inferior turbinate surgery on nasal airflow--a computational fluid dynamics model. Rhinology. vol 48. issue 4. 2011-07-26. PMID:21442074. the aim of this study was to evaluate the effects of inferior turbinate surgery on nasal aerodynamics using computational fluid dynamics (cfd) simulations. 2011-07-26 2023-08-12 Not clear
Yufeng Guo, Yuning Zhang, Guang Chen, Shuhong Liu, Xiaofeng Lu, Min Zhu, Changping Cai, Xueming Che. [A computational fluid dynamics study of inner flow through nasal cavity with unilateral hypertrophic inferior turbinate]. Lin chuang er bi yan hou tou jing wai ke za zhi = Journal of clinical otorhinolaryngology, head, and neck surgery. vol 23. issue 17. 2011-07-08. PMID:20030039. to investigate the anatomical influence of the hypertrophic inferior turbinate on computational fluid dynamics (cfd) model of unilateral hypertrophic inferior turbinate nasal cavity, and to analyze the bilateral detailed nasal airflow simulations under both inspiratory and expiratory phases in cfd model. 2011-07-08 2023-08-12 Not clear
Tao Wang, Xiongzhen Mu, Jian Deng, Peihua Wang, Dong Chen, Weiyu Ca. Investigation on the structure of nasal cavity and its airflow field in Crouzon syndrome. The Journal of craniofacial surgery. vol 22. issue 1. 2011-06-02. PMID:21233760. setup computational fluid dynamics (cfd) model of the nasal cavity in patients with crouzon syndrome analyze inspiratory airflow hydrokinetics of its nasal cavity. 2011-06-02 2023-08-12 Not clear
Xiao Bing Chen, Heow Pueh Lee, Vincent Fook Hin Chong, De Yun Wan. Numerical simulation of the effects of inferior turbinate surgery on nasal airway heating capacity. American journal of rhinology & allergy. vol 24. issue 5. 2011-04-22. PMID:21244728. the aim of this study was to evaluate the effects of inferior turbinate surgery on nasal airway heating capacity using computational fluid dynamics (cfd) simulations. 2011-04-22 2023-08-12 Not clear
Jong-Hoon Lee, Yang Na, Sung-Kyun Kim, Seung-Kyu Chun. Unsteady flow characteristics through a human nasal airway. Respiratory physiology & neurobiology. vol 172. issue 3. 2010-10-19. PMID:20471501. time-dependent characteristics of the flow in a human nasal airway constructed from the ct image of a healthy volunteer were investigated using a computational fluid dynamics (cfd) technique. 2010-10-19 2023-08-12 human
Xiao Bing Chen, Heow Pueh Lee, Vincent Fook Hin Chong, De Yun Wan. Impact of inferior turbinate hypertrophy on the aerodynamic pattern and physiological functions of the turbulent airflow - a CFD simulation model. Rhinology. vol 48. issue 2. 2010-08-13. PMID:20502754. the aim of this study was to investigate the effects of nasal obstruction with enlargement of inferior turbinates on the aerodynamic flow pattern using computational fluid dynamics (cfd) tools including the effects of turbulence. 2010-08-13 2023-08-12 Not clear
R A Corley, K R Minard, S Kabilan, D R Einstein, A P Kuprat, J R Harkema, J S Kimbell, M L Gargas, John H Kinzel. Magnetic resonance imaging and computational fluid dynamics (CFD) simulations of rabbit nasal airflows for the development of hybrid CFD/PBPK models. Inhalation toxicology. vol 21. issue 6. 2010-05-25. PMID:19519151. magnetic resonance imaging and computational fluid dynamics (cfd) simulations of rabbit nasal airflows for the development of hybrid cfd/pbpk models. 2010-05-25 2023-08-12 mouse
R A Corley, K R Minard, S Kabilan, D R Einstein, A P Kuprat, J R Harkema, J S Kimbell, M L Gargas, John H Kinzel. Magnetic resonance imaging and computational fluid dynamics (CFD) simulations of rabbit nasal airflows for the development of hybrid CFD/PBPK models. Inhalation toxicology. vol 21. issue 6. 2010-05-25. PMID:19519151. the percentages of total airflows over the nasal respiratory and olfactory epithelium of female rabbits were calculated from computational fluid dynamics (cfd) simulations of steady-state inhalation. 2010-05-25 2023-08-12 mouse
Jeffry D Schroeter, Guilherme J M Garcia, Julia S Kimbel. A computational fluid dynamics approach to assess interhuman variability in hydrogen sulfide nasal dosimetry. Inhalation toxicology. vol 22. issue 4. 2010-04-30. PMID:20064104. using nasal computational fluid dynamics (cfd) models, a correlation was found between wall mass flux and olfactory neuronal loss in rodents, suggesting an influence of airflow patterns on lesion locations that may affect interspecies extrapolation of inhaled dose. 2010-04-30 2023-08-12 human