Mathematical Model for Estimation of Volume Respiratory Parameters

A mathematical model of the biomechanics of human respiration has been developed. To verify the proposed mathematical model, it is suggested to use a photo-optical method for recording the biomechanics of the chest and abdomen together with spirometry. Pilot studies were carried out among 10 men age...

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Main Author: I. I. Revinskaya
Format: Article
Language:Russian
Published: Educational institution «Belarusian State University of Informatics and Radioelectronics» 2023-03-01
Series:Doklady Belorusskogo gosudarstvennogo universiteta informatiki i radioèlektroniki
Subjects:
Online Access:https://doklady.bsuir.by/jour/article/view/3560
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author I. I. Revinskaya
author_facet I. I. Revinskaya
author_sort I. I. Revinskaya
collection DOAJ
description A mathematical model of the biomechanics of human respiration has been developed. To verify the proposed mathematical model, it is suggested to use a photo-optical method for recording the biomechanics of the chest and abdomen together with spirometry. Pilot studies were carried out among 10 men aged 20–22. The body mass index of the subjects ranged from 19.3 to 21.5 kg/m², height – from 169 to 182 cm, weight – from 55 to 70 kg. Correlation-regression analysis of the results showed a strong relationship between biomechanical movements of the chest and abdominal walls and changes in the diameters of the airways during continuous breathing (correlation coefficient r = 0.89, statistically significant test result p ≤ 0.05). The proposed mathematical model can be used for indirect estimation of lung volume.
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spelling doaj.art-17d644516b4a4dbdae2af227809552912023-03-13T07:33:23ZrusEducational institution «Belarusian State University of Informatics and Radioelectronics»Doklady Belorusskogo gosudarstvennogo universiteta informatiki i radioèlektroniki1729-76482023-03-01211192510.35596/1729-7648-2023-21-1-19-251871Mathematical Model for Estimation of Volume Respiratory ParametersI. I. Revinskaya0Belarusian State University of Informatics and RadioelectronicsA mathematical model of the biomechanics of human respiration has been developed. To verify the proposed mathematical model, it is suggested to use a photo-optical method for recording the biomechanics of the chest and abdomen together with spirometry. Pilot studies were carried out among 10 men aged 20–22. The body mass index of the subjects ranged from 19.3 to 21.5 kg/m², height – from 169 to 182 cm, weight – from 55 to 70 kg. Correlation-regression analysis of the results showed a strong relationship between biomechanical movements of the chest and abdominal walls and changes in the diameters of the airways during continuous breathing (correlation coefficient r = 0.89, statistically significant test result p ≤ 0.05). The proposed mathematical model can be used for indirect estimation of lung volume.https://doklady.bsuir.by/jour/article/view/3560mathematical modelbiomechanicsrespirationrespiratory tractspirometryvideocameralungs volume
spellingShingle I. I. Revinskaya
Mathematical Model for Estimation of Volume Respiratory Parameters
Doklady Belorusskogo gosudarstvennogo universiteta informatiki i radioèlektroniki
mathematical model
biomechanics
respiration
respiratory tract
spirometry
videocamera
lungs volume
title Mathematical Model for Estimation of Volume Respiratory Parameters
title_full Mathematical Model for Estimation of Volume Respiratory Parameters
title_fullStr Mathematical Model for Estimation of Volume Respiratory Parameters
title_full_unstemmed Mathematical Model for Estimation of Volume Respiratory Parameters
title_short Mathematical Model for Estimation of Volume Respiratory Parameters
title_sort mathematical model for estimation of volume respiratory parameters
topic mathematical model
biomechanics
respiration
respiratory tract
spirometry
videocamera
lungs volume
url https://doklady.bsuir.by/jour/article/view/3560
work_keys_str_mv AT iirevinskaya mathematicalmodelforestimationofvolumerespiratoryparameters