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The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus

BACKGROUND: A distinct velocity pattern represented by a "notch" is observed during the time interval between the end of the systolic and the onset of the early diastolic velocity wave on longitudinal myocardial velocity curve. The origin of the post-systolic velocity notch (PSN) has not b...

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Autores principales: Ouss, Alexandre J., Riezebos, Robert K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society of Echocardiography 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3992344/
https://www.ncbi.nlm.nih.gov/pubmed/24753805
http://dx.doi.org/10.4250/jcu.2014.22.1.23
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author Ouss, Alexandre J.
Riezebos, Robert K.
author_facet Ouss, Alexandre J.
Riezebos, Robert K.
author_sort Ouss, Alexandre J.
collection PubMed
description BACKGROUND: A distinct velocity pattern represented by a "notch" is observed during the time interval between the end of the systolic and the onset of the early diastolic velocity wave on longitudinal myocardial velocity curve. The origin of the post-systolic velocity notch (PSN) has not been resolved. METHODS: The high frame rate color tissue Doppler imaging of the apical longitudinal axis was performed in 32 healthy subjects. RESULTS: The time delays of the PSN onset at the posterior aortic wall (AW), the mid anteroseptal wall (MAS) and the posterior mitral annulus (MA) relatively to the anterior aortic annulus (AA) were found to be significantly longer than zero (5.1 ± 2.2, 6.0 ± 2.3, 6.8 ± 2.8 ms; p < 0.001). The amplitude was the highest at the AA when compared to the AW, the MAS and the MA (4.77 ± 1.28 vs. 2.88 ± 1.11, 2.15 ± 0.73, 2.44 ± 1.17 cm/s; p < 0.001). A second PSN spike was identifiable in 10/32 (31%) of the studied subjects at the AA. Of these, 9 (28%) exhibited a second PSN spike at the AW, 3 (9%) at the MAS and no one at the MA. CONCLUSION: The AA represents the site of the earliest onset and maximal amplitude of the PSN on the longitudinal velocity curve suggesting its mechanism to be that of an energy release at the instant of the aortic valve closure causing an apically directed acceleration of the myocardium. A substantial number of healthy subjects exhibit a second PSN spike predominantly at the level of the AA. Its mechanism remains to be elucidated.
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spelling pubmed-39923442014-04-21 The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus Ouss, Alexandre J. Riezebos, Robert K. J Cardiovasc Ultrasound Original Article BACKGROUND: A distinct velocity pattern represented by a "notch" is observed during the time interval between the end of the systolic and the onset of the early diastolic velocity wave on longitudinal myocardial velocity curve. The origin of the post-systolic velocity notch (PSN) has not been resolved. METHODS: The high frame rate color tissue Doppler imaging of the apical longitudinal axis was performed in 32 healthy subjects. RESULTS: The time delays of the PSN onset at the posterior aortic wall (AW), the mid anteroseptal wall (MAS) and the posterior mitral annulus (MA) relatively to the anterior aortic annulus (AA) were found to be significantly longer than zero (5.1 ± 2.2, 6.0 ± 2.3, 6.8 ± 2.8 ms; p < 0.001). The amplitude was the highest at the AA when compared to the AW, the MAS and the MA (4.77 ± 1.28 vs. 2.88 ± 1.11, 2.15 ± 0.73, 2.44 ± 1.17 cm/s; p < 0.001). A second PSN spike was identifiable in 10/32 (31%) of the studied subjects at the AA. Of these, 9 (28%) exhibited a second PSN spike at the AW, 3 (9%) at the MAS and no one at the MA. CONCLUSION: The AA represents the site of the earliest onset and maximal amplitude of the PSN on the longitudinal velocity curve suggesting its mechanism to be that of an energy release at the instant of the aortic valve closure causing an apically directed acceleration of the myocardium. A substantial number of healthy subjects exhibit a second PSN spike predominantly at the level of the AA. Its mechanism remains to be elucidated. Korean Society of Echocardiography 2014-03 2014-03-31 /pmc/articles/PMC3992344/ /pubmed/24753805 http://dx.doi.org/10.4250/jcu.2014.22.1.23 Text en Copyright © 2014 Korean Society of Echocardiography http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Ouss, Alexandre J.
Riezebos, Robert K.
The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus
title The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus
title_full The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus
title_fullStr The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus
title_full_unstemmed The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus
title_short The Tissue Doppler Imaging Derived Post-Systolic Velocity Notch Originates at the Aortic Annulus
title_sort tissue doppler imaging derived post-systolic velocity notch originates at the aortic annulus
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3992344/
https://www.ncbi.nlm.nih.gov/pubmed/24753805
http://dx.doi.org/10.4250/jcu.2014.22.1.23
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