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PMID: 28547013 Published · ppublish English Journal Article

New CFD tools to evaluate nasal airflow.

Burgos MA, Sanmiguel-Rojas E, Del Pino C, Sevilla-García MA, Esteban-Ortega F

Abstract

Computational fluid dynamics (CFD) is a mathematical tool to analyse airflow. As currently CFD is not a usual tool for rhinologists, a group of engineers in collaboration with experts in Rhinology have developed a very intuitive CFD software. The program MECOMLAND® only required snapshots from the patient's cross-sectional (tomographic) images, being the output those results originated by CFD, such as airflow distributions, velocity profiles, pressure, temperature, or wall shear stress. This is useful complementary information to cover diagnosis, prognosis, or follow-up of nasal pathologies based on quantitative magnitudes linked to airflow. In addition, the user-friendly environment NOSELAND® helps the medical assessment significantly in the post-processing phase with dynamic reports using a 3D endoscopic view. Specialists in Rhinology have been asked for a more intuitive, simple, powerful CFD software to offer more quality and precision in their work to evaluate the nasal airflow. We present MECOMLAND® and NOSELAND® which have all the expected characteristics to fulfil this demand and offer a proper assessment with the maximum of quality plus safety for the patient. These programs represent a non-invasive, low-cost (as the CT scan is already performed in every patient) alternative for the functional study of the difficult rhinologic case. To validate the software, we studied two groups of patients from the Ear Nose Throat clinic, a first group with normal noses and a second group presenting septal deviations. Wall shear stresses are lower in the cases of normal noses in comparison with those for septal deviation. Besides, velocity field distributions, pressure drop between nasopharynx and the ambient, and flow rates in each nostril were different among the nasal cavities in the two groups. These software modules open up a promising future to simulate the nasal airflow behaviour in virtual surgery intervention scenarios under different pressure or temperature conditions to understand the effects on nasal airflow.

Keywords
3D model Airflow Computational fluid dynamics Nasal cavity
MeSH 主题词
Adolescent Adult Aged Endoscopy Female Humans Hydrodynamics Image Processing, Computer-Assisted Imaging, Three-Dimensional Male Middle Aged Nasal Cavity/diagnostic imaging,physiology Rheology Software Tomography, X-Ray Computed Young Adult
作者与单位
共 5 位作者,点击展开单位 / ORCID
Burgos M A
Departamento de Ingeniería Térmica y de Fluidos, Universidad Politécnica de Cartagena, Cartagena, Spain.
Sanmiguel-Rojas E
Escuela de Ingenierías Industriales, Universidad de Málaga, Campus de Teatinos, 29071, Málaga, Spain.
Del Pino C ORCID
Escuela de Ingenierías Industriales, Universidad de Málaga, Campus de Teatinos, 29071, Málaga, Spain. [email protected].
Sevilla-García M A
Departamento de Otorrinolaringología, Hospital Universitario Virgen del Rocío, Sevilla, Spain.
Esteban-Ortega F
Departamento de Otorrinolaringología, Hospital Universitario Virgen del Rocío, Sevilla, Spain.
Article Info
Journal
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
Abbr.
Eur Arch Otorhinolaryngol
ISSN
1434-4726
Corresponding email
Published
2017-08-00
电子出版
2017-00-25
页码
3121-3128
Language
English
Country/Region
Germany
NLM ID
9002937
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