Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture Systems

Introduction. In healthcare, breath analysis is increasingly used to detect diseases and monitor human health. Assessment of respiratory parameters, such as breathing frequency, is an important component in evaluating the overall state of the respiratory system. However, conventional methods, such a...

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Main Authors: A. V. Drozdova, A. N. Tkachenko, E. M. Skrebova, I. A. Sakun
Format: Article
Language:Russian
Published: Saint Petersburg Electrotechnical University "LETI" 2024-09-01
Series:Известия высших учебных заведений России: Радиоэлектроника
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Online Access:https://re.eltech.ru/jour/article/view/917
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author A. V. Drozdova
A. N. Tkachenko
E. M. Skrebova
I. A. Sakun
author_facet A. V. Drozdova
A. N. Tkachenko
E. M. Skrebova
I. A. Sakun
author_sort A. V. Drozdova
collection DOAJ
description Introduction. In healthcare, breath analysis is increasingly used to detect diseases and monitor human health. Assessment of respiratory parameters, such as breathing frequency, is an important component in evaluating the overall state of the respiratory system. However, conventional methods, such as spirometry, have their limitations. Motion capture systems, such as marker-based video analysis, offer a promising and innovative approach for measuring respiratory parameters in conjunction with other investigations. This approach provides accurate data on respiratory activity without requiring specialized medical equipment. The use of such systems has the potential to significantly extend the scope of their application in rehabilitation and sports medicine.Aim. Development of an algorithm for determining breathing parameters using a marker-based motion capture system. Development of an algorithm for optimal body position and best marker locations for determining breathing parameters. Analysis of control measurements.Materials and methods. The data obtained as a result of synchronous recording of signals from an optical motion capture system and a spirometer were analyzed. The respiration rate was determined by spectral analysis and Fourier transform.Results. An algorithm for analyzing and interpreting respiratory rate was developed. This algorithm not only considers body positions and marker locations, but also provides recommendations regarding their optimal placement.Conclusion. The results obtained confirm the prospects of marker video analysis in assessing the frequency of respiratory movements using a motion capture system. Further studies will be aimed at taking physical activity into account with the purpose of developing effective diagnostic methods of external respiration parameters and respiratory disorders.
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issn 1993-8985
2658-4794
language Russian
publishDate 2024-09-01
publisher Saint Petersburg Electrotechnical University "LETI"
record_format Article
series Известия высших учебных заведений России: Радиоэлектроника
spelling doaj-art-bcecabaaf4c045a88dc0a8b421d189872025-08-20T02:58:55ZrusSaint Petersburg Electrotechnical University "LETI"Известия высших учебных заведений России: Радиоэлектроника1993-89852658-47942024-09-012749110210.32603/1993-8985-2024-27-4-91-102590Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture SystemsA. V. Drozdova0A. N. Tkachenko1E. M. Skrebova2I. A. Sakun3Saint Petersburg Electrotechnical UniversitySaint Petersburg Electrotechnical UniversitySaint Petersburg Electrotechnical UniversitySaint Petersburg Electrotechnical UniversityIntroduction. In healthcare, breath analysis is increasingly used to detect diseases and monitor human health. Assessment of respiratory parameters, such as breathing frequency, is an important component in evaluating the overall state of the respiratory system. However, conventional methods, such as spirometry, have their limitations. Motion capture systems, such as marker-based video analysis, offer a promising and innovative approach for measuring respiratory parameters in conjunction with other investigations. This approach provides accurate data on respiratory activity without requiring specialized medical equipment. The use of such systems has the potential to significantly extend the scope of their application in rehabilitation and sports medicine.Aim. Development of an algorithm for determining breathing parameters using a marker-based motion capture system. Development of an algorithm for optimal body position and best marker locations for determining breathing parameters. Analysis of control measurements.Materials and methods. The data obtained as a result of synchronous recording of signals from an optical motion capture system and a spirometer were analyzed. The respiration rate was determined by spectral analysis and Fourier transform.Results. An algorithm for analyzing and interpreting respiratory rate was developed. This algorithm not only considers body positions and marker locations, but also provides recommendations regarding their optimal placement.Conclusion. The results obtained confirm the prospects of marker video analysis in assessing the frequency of respiratory movements using a motion capture system. Further studies will be aimed at taking physical activity into account with the purpose of developing effective diagnostic methods of external respiration parameters and respiratory disorders.https://re.eltech.ru/jour/article/view/917respiratory ratemotion capture systemmarker video analysisspectral analysisspirometry
spellingShingle A. V. Drozdova
A. N. Tkachenko
E. M. Skrebova
I. A. Sakun
Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture Systems
Известия высших учебных заведений России: Радиоэлектроника
respiratory rate
motion capture system
marker video analysis
spectral analysis
spirometry
title Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture Systems
title_full Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture Systems
title_fullStr Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture Systems
title_full_unstemmed Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture Systems
title_short Algorithm for Processing Measurements of External Respiration Parameters Using Motion Capture Systems
title_sort algorithm for processing measurements of external respiration parameters using motion capture systems
topic respiratory rate
motion capture system
marker video analysis
spectral analysis
spirometry
url https://re.eltech.ru/jour/article/view/917
work_keys_str_mv AT avdrozdova algorithmforprocessingmeasurementsofexternalrespirationparametersusingmotioncapturesystems
AT antkachenko algorithmforprocessingmeasurementsofexternalrespirationparametersusingmotioncapturesystems
AT emskrebova algorithmforprocessingmeasurementsofexternalrespirationparametersusingmotioncapturesystems
AT iasakun algorithmforprocessingmeasurementsofexternalrespirationparametersusingmotioncapturesystems