Cargando…

Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations

This study analyzes the existing methods for studying nasal breathing. The aspects of verifying the results of rhinomanometric diagnostics according to the data of spiral computed tomography are considered, and the methodological features of dynamic posterior active rhinomanometry and the main indic...

Descripción completa

Detalles Bibliográficos
Autores principales: Avrunin, Oleg G., Nosova, Yana V., Abdelhamid, Ibrahim Younouss, Pavlov, Sergii V., Shushliapina, Natalia O., Bouhlal, Natalia A., Ormanbekova, Ainur, Iskakova, Aigul, Harasim, Damian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8708127/
https://www.ncbi.nlm.nih.gov/pubmed/34960601
http://dx.doi.org/10.3390/s21248508
_version_ 1784622606132969472
author Avrunin, Oleg G.
Nosova, Yana V.
Abdelhamid, Ibrahim Younouss
Pavlov, Sergii V.
Shushliapina, Natalia O.
Bouhlal, Natalia A.
Ormanbekova, Ainur
Iskakova, Aigul
Harasim, Damian
author_facet Avrunin, Oleg G.
Nosova, Yana V.
Abdelhamid, Ibrahim Younouss
Pavlov, Sergii V.
Shushliapina, Natalia O.
Bouhlal, Natalia A.
Ormanbekova, Ainur
Iskakova, Aigul
Harasim, Damian
author_sort Avrunin, Oleg G.
collection PubMed
description This study analyzes the existing methods for studying nasal breathing. The aspects of verifying the results of rhinomanometric diagnostics according to the data of spiral computed tomography are considered, and the methodological features of dynamic posterior active rhinomanometry and the main indicators of respiration are also analyzed. The possibilities of testing respiratory olfactory disorders are considered, the analysis of errors in rhinomanometric measurements is carried out. In the conclusions, practical recommendations are given that have been developed for the design and operation of tools for functional diagnostics of nasal breathing disorders. It is advisable, according to the data of dynamic rhinomanometry, to assess the functioning of the nasal valve by the shape of the air flow rate signals during forced breathing and the structures of the soft palate by the residual nasopharyngeal pressure drop. It is imperative to take into account not only the maximum coefficient of aerodynamic nose drag, but also the values of the pressure drop and air flow rate in the area of transition to the turbulent quadratic flow regime. From the point of view of the physiology of the nasal response, it is necessary to look at the dynamic change to the current mode, given the hour of the forced response, so that it will ensure the maximum possible acidity in the legend. When planning functional rhinosurgical operations, it is necessary to apply the calculation method using computed tomography, which makes it possible to predict the functional result of surgery.
format Online
Article
Text
id pubmed-8708127
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87081272021-12-25 Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations Avrunin, Oleg G. Nosova, Yana V. Abdelhamid, Ibrahim Younouss Pavlov, Sergii V. Shushliapina, Natalia O. Bouhlal, Natalia A. Ormanbekova, Ainur Iskakova, Aigul Harasim, Damian Sensors (Basel) Article This study analyzes the existing methods for studying nasal breathing. The aspects of verifying the results of rhinomanometric diagnostics according to the data of spiral computed tomography are considered, and the methodological features of dynamic posterior active rhinomanometry and the main indicators of respiration are also analyzed. The possibilities of testing respiratory olfactory disorders are considered, the analysis of errors in rhinomanometric measurements is carried out. In the conclusions, practical recommendations are given that have been developed for the design and operation of tools for functional diagnostics of nasal breathing disorders. It is advisable, according to the data of dynamic rhinomanometry, to assess the functioning of the nasal valve by the shape of the air flow rate signals during forced breathing and the structures of the soft palate by the residual nasopharyngeal pressure drop. It is imperative to take into account not only the maximum coefficient of aerodynamic nose drag, but also the values of the pressure drop and air flow rate in the area of transition to the turbulent quadratic flow regime. From the point of view of the physiology of the nasal response, it is necessary to look at the dynamic change to the current mode, given the hour of the forced response, so that it will ensure the maximum possible acidity in the legend. When planning functional rhinosurgical operations, it is necessary to apply the calculation method using computed tomography, which makes it possible to predict the functional result of surgery. MDPI 2021-12-20 /pmc/articles/PMC8708127/ /pubmed/34960601 http://dx.doi.org/10.3390/s21248508 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Avrunin, Oleg G.
Nosova, Yana V.
Abdelhamid, Ibrahim Younouss
Pavlov, Sergii V.
Shushliapina, Natalia O.
Bouhlal, Natalia A.
Ormanbekova, Ainur
Iskakova, Aigul
Harasim, Damian
Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations
title Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations
title_full Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations
title_fullStr Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations
title_full_unstemmed Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations
title_short Research Active Posterior Rhinomanometry Tomography Method for Nasal Breathing Determining Violations
title_sort research active posterior rhinomanometry tomography method for nasal breathing determining violations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8708127/
https://www.ncbi.nlm.nih.gov/pubmed/34960601
http://dx.doi.org/10.3390/s21248508
work_keys_str_mv AT avruninolegg researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT nosovayanav researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT abdelhamidibrahimyounouss researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT pavlovsergiiv researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT shushliapinanataliao researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT bouhlalnataliaa researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT ormanbekovaainur researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT iskakovaaigul researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations
AT harasimdamian researchactiveposteriorrhinomanometrytomographymethodfornasalbreathingdeterminingviolations