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The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point

The aim of the study was to describe the boundary between the phases of rapid and slow ejection in the cardiac cycle and to define the exact location of the j point on ECGs. MATERIALS AND METHODS. The work is based on the theory of heart cycle phase analysis using mathematical equations of hemodynam...

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Autores principales: Voronova, O.K., Zernov, V.A., Rudenko, M.Yu.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Privolzhsky Research Medical University 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8596249/
https://www.ncbi.nlm.nih.gov/pubmed/34795974
http://dx.doi.org/10.17691/stm2020.12.3.01
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author Voronova, O.K.
Zernov, V.A.
Rudenko, M.Yu.
author_facet Voronova, O.K.
Zernov, V.A.
Rudenko, M.Yu.
author_sort Voronova, O.K.
collection PubMed
description The aim of the study was to describe the boundary between the phases of rapid and slow ejection in the cardiac cycle and to define the exact location of the j point on ECGs. MATERIALS AND METHODS. The work is based on the theory of heart cycle phase analysis using mathematical equations of hemodynamics. The balance of phase diastolic and systolic blood volumes depending on the duration of the cardiac cycle phases has been verified by these equations. The interrelation of phase duration and phase blood volumes was employed to exactly define the cardiac cycle boundaries on ECGs. Synchronous recording of the ECG and rheogram was used to determine the precise location of the j point. RESULTS. The exact boundary between the phases of rapid and slow ejection has been defined. A new point L determining the boundary between SL–Lj phases was introduced for its designation. CONCLUSION. The j point was previously considered to be part of an ECG depending on the body temperature and which does not always appear. It had an ambiguous definition: Osborn wave or j wave. At the same time, the precise boundary between the rapid and slow ejection phases, the blood volumes of which in the total amount are equal to the blood stroke volume, has not been identified exactly. The work performed allows for accurate definition of criteria for recording rapid and slow ejection phases and j point location on the ECG.
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spelling pubmed-85962492021-11-17 The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point Voronova, O.K. Zernov, V.A. Rudenko, M.Yu. Sovrem Tekhnologii Med Advanced Researches The aim of the study was to describe the boundary between the phases of rapid and slow ejection in the cardiac cycle and to define the exact location of the j point on ECGs. MATERIALS AND METHODS. The work is based on the theory of heart cycle phase analysis using mathematical equations of hemodynamics. The balance of phase diastolic and systolic blood volumes depending on the duration of the cardiac cycle phases has been verified by these equations. The interrelation of phase duration and phase blood volumes was employed to exactly define the cardiac cycle boundaries on ECGs. Synchronous recording of the ECG and rheogram was used to determine the precise location of the j point. RESULTS. The exact boundary between the phases of rapid and slow ejection has been defined. A new point L determining the boundary between SL–Lj phases was introduced for its designation. CONCLUSION. The j point was previously considered to be part of an ECG depending on the body temperature and which does not always appear. It had an ambiguous definition: Osborn wave or j wave. At the same time, the precise boundary between the rapid and slow ejection phases, the blood volumes of which in the total amount are equal to the blood stroke volume, has not been identified exactly. The work performed allows for accurate definition of criteria for recording rapid and slow ejection phases and j point location on the ECG. Privolzhsky Research Medical University 2020 2020-06-28 /pmc/articles/PMC8596249/ /pubmed/34795974 http://dx.doi.org/10.17691/stm2020.12.3.01 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY 4.0 license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Advanced Researches
Voronova, O.K.
Zernov, V.A.
Rudenko, M.Yu.
The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point
title The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point
title_full The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point
title_fullStr The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point
title_full_unstemmed The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point
title_short The Exact Definition of the Boundary between the Rapid and Slow Ejection Phases on ECGs and Accurate Location of the j Point
title_sort exact definition of the boundary between the rapid and slow ejection phases on ecgs and accurate location of the j point
topic Advanced Researches
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8596249/
https://www.ncbi.nlm.nih.gov/pubmed/34795974
http://dx.doi.org/10.17691/stm2020.12.3.01
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