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Internal nasal dimensions of adults with nasal obstruction

Nasal septum deviation (SD) and turbinate hypertrophy (TH) increase the resistance to respiratory airflow and may impair nasal patency. OBJECTIVE: To characterize the nasal geometry of individuals with nasal obstruction secondary to SD and/or TH by means of acoustic rhinometry. METHOD: This prospect...

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Autores principales: Trindade, Inge Elly Kiemle, Conegliam, Priscila Capelato Prado, Trindade, Sergio Henrique Kiemle, Dias, Norimar Hernandes, Sampaio-Teixeira, Ana Claudia Martins
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9442430/
https://www.ncbi.nlm.nih.gov/pubmed/24141671
http://dx.doi.org/10.5935/1808-8694.20130103
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author Trindade, Inge Elly Kiemle
Conegliam, Priscila Capelato Prado
Trindade, Sergio Henrique Kiemle
Dias, Norimar Hernandes
Sampaio-Teixeira, Ana Claudia Martins
author_facet Trindade, Inge Elly Kiemle
Conegliam, Priscila Capelato Prado
Trindade, Sergio Henrique Kiemle
Dias, Norimar Hernandes
Sampaio-Teixeira, Ana Claudia Martins
author_sort Trindade, Inge Elly Kiemle
collection PubMed
description Nasal septum deviation (SD) and turbinate hypertrophy (TH) increase the resistance to respiratory airflow and may impair nasal patency. OBJECTIVE: To characterize the nasal geometry of individuals with nasal obstruction secondary to SD and/or TH by means of acoustic rhinometry. METHOD: This prospective study included 30 adults with complaints of nasal obstruction (NO) and SD + TH (n = 24), SD (n = 5) or TH (n = 1) seen by clinical examination. The cross-sectional areas of the three main dips of the rhinogram (CSA(1), CSA(2), CSA(3)), the distance between them and the nostrils (dCSA(1), dCSA(2), dCSA(3)), and the volumes of segments 1.0-3.2 cm (V(1)), 3.3-6.4 cm (V(2)), and 7.0-12.0 cm (V(3)) were measured before and after nasal decongestion (DN). For analysis, right and left cross-sectional areas and volumes were added and mean dCSA was calculated. RESULTS: Mean values (± standard deviation) before ND were: 0.83 ± 0.23 (CSA(1)), 1.66 ± 0.52 (CSA(2)), and 2.36 ± 0.77 (CSA(3)) cm(2); 2.19 ± 0.20 (dCSA(1)), 4.01 ± 0.33 (dCSA(2)), and 5.85 ± 0.37 (dCSA(3)) cm; 2.77 ± 0.51 (V(1)), 6.52 ± 1.99 (V(2)), and 26.00 ± 9.62 (V(3)) cm(3); all values were lower than laboratory reference values (p < 0.05). ND led to proportionally greater increases of sectional areas and volumes in the NO group, suggesting an associated functional component. Individual analysis revealed 12 cases with normal results despite nasal obstruction. CONCLUSION: Most patients with structural nasal obstruction had results suggestive of nasal patency impairment in acoustic rhinometry.
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spelling pubmed-94424302022-09-09 Internal nasal dimensions of adults with nasal obstruction Trindade, Inge Elly Kiemle Conegliam, Priscila Capelato Prado Trindade, Sergio Henrique Kiemle Dias, Norimar Hernandes Sampaio-Teixeira, Ana Claudia Martins Braz J Otorhinolaryngol Original Article Nasal septum deviation (SD) and turbinate hypertrophy (TH) increase the resistance to respiratory airflow and may impair nasal patency. OBJECTIVE: To characterize the nasal geometry of individuals with nasal obstruction secondary to SD and/or TH by means of acoustic rhinometry. METHOD: This prospective study included 30 adults with complaints of nasal obstruction (NO) and SD + TH (n = 24), SD (n = 5) or TH (n = 1) seen by clinical examination. The cross-sectional areas of the three main dips of the rhinogram (CSA(1), CSA(2), CSA(3)), the distance between them and the nostrils (dCSA(1), dCSA(2), dCSA(3)), and the volumes of segments 1.0-3.2 cm (V(1)), 3.3-6.4 cm (V(2)), and 7.0-12.0 cm (V(3)) were measured before and after nasal decongestion (DN). For analysis, right and left cross-sectional areas and volumes were added and mean dCSA was calculated. RESULTS: Mean values (± standard deviation) before ND were: 0.83 ± 0.23 (CSA(1)), 1.66 ± 0.52 (CSA(2)), and 2.36 ± 0.77 (CSA(3)) cm(2); 2.19 ± 0.20 (dCSA(1)), 4.01 ± 0.33 (dCSA(2)), and 5.85 ± 0.37 (dCSA(3)) cm; 2.77 ± 0.51 (V(1)), 6.52 ± 1.99 (V(2)), and 26.00 ± 9.62 (V(3)) cm(3); all values were lower than laboratory reference values (p < 0.05). ND led to proportionally greater increases of sectional areas and volumes in the NO group, suggesting an associated functional component. Individual analysis revealed 12 cases with normal results despite nasal obstruction. CONCLUSION: Most patients with structural nasal obstruction had results suggestive of nasal patency impairment in acoustic rhinometry. Elsevier 2015-10-08 /pmc/articles/PMC9442430/ /pubmed/24141671 http://dx.doi.org/10.5935/1808-8694.20130103 Text en . https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Trindade, Inge Elly Kiemle
Conegliam, Priscila Capelato Prado
Trindade, Sergio Henrique Kiemle
Dias, Norimar Hernandes
Sampaio-Teixeira, Ana Claudia Martins
Internal nasal dimensions of adults with nasal obstruction
title Internal nasal dimensions of adults with nasal obstruction
title_full Internal nasal dimensions of adults with nasal obstruction
title_fullStr Internal nasal dimensions of adults with nasal obstruction
title_full_unstemmed Internal nasal dimensions of adults with nasal obstruction
title_short Internal nasal dimensions of adults with nasal obstruction
title_sort internal nasal dimensions of adults with nasal obstruction
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9442430/
https://www.ncbi.nlm.nih.gov/pubmed/24141671
http://dx.doi.org/10.5935/1808-8694.20130103
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