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Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out

BACKGROUND: Arterial stiffness directly influences cardiac function and is independently associated with cardiovascular risk. However, the influence of the aortic reflected pulse pressure wave on left ventricular function has not been well characterized. The aim of this study was to obtain detailed...

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Autores principales: Codreanu, Ion, Robson, Matthew D, Rider, Oliver J, Pegg, Tammy J, Jung, Bernd A, Dasanu, Constantin A, Clarke, Kieran, Holloway, Cameron J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3119594/
https://www.ncbi.nlm.nih.gov/pubmed/21731888
http://dx.doi.org/10.2147/VHRM.S20845
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author Codreanu, Ion
Robson, Matthew D
Rider, Oliver J
Pegg, Tammy J
Jung, Bernd A
Dasanu, Constantin A
Clarke, Kieran
Holloway, Cameron J
author_facet Codreanu, Ion
Robson, Matthew D
Rider, Oliver J
Pegg, Tammy J
Jung, Bernd A
Dasanu, Constantin A
Clarke, Kieran
Holloway, Cameron J
author_sort Codreanu, Ion
collection PubMed
description BACKGROUND: Arterial stiffness directly influences cardiac function and is independently associated with cardiovascular risk. However, the influence of the aortic reflected pulse pressure wave on left ventricular function has not been well characterized. The aim of this study was to obtain detailed information on regional ventricular wall motion patterns corresponding to the propagation of the reflected aortic wave on ventricular segments. METHODS: Left ventricular wall motion was investigated in a group of healthy volunteers (n = 14, age 23 ± 3 years), using cardiac magnetic resonance navigator-gated tissue phase mapping. The left ventricle was divided into 16 segments and regional wall motion was studied in high temporal detail. RESULTS: Corresponding to the expected timing of the reflected aortic wave reaching the left ventricle, a characteristic “notch” of regional myocardial motion was seen in all radial, circumferential, and longitudinal velocity graphs. This notch was particularly prominent in septal segments adjacent to the left ventricular outflow tract on radial velocity graphs and in anterior and posterior left ventricular segments on circumferential velocity graphs. Similarly, longitudinal velocity graphs demonstrated a brief deceleration in the upward recoil motion of the entire ventricle at the beginning of diastole. CONCLUSION: These results provide new insights into the possible influence of the reflected aortic waves on ventricular segments. Although the association with the reflected wave appears to us to be unambiguous, it represents a novel research concept, and further studies enabling the actual recording of the pulse wave are required.
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spelling pubmed-31195942011-07-05 Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out Codreanu, Ion Robson, Matthew D Rider, Oliver J Pegg, Tammy J Jung, Bernd A Dasanu, Constantin A Clarke, Kieran Holloway, Cameron J Vasc Health Risk Manag Original Research BACKGROUND: Arterial stiffness directly influences cardiac function and is independently associated with cardiovascular risk. However, the influence of the aortic reflected pulse pressure wave on left ventricular function has not been well characterized. The aim of this study was to obtain detailed information on regional ventricular wall motion patterns corresponding to the propagation of the reflected aortic wave on ventricular segments. METHODS: Left ventricular wall motion was investigated in a group of healthy volunteers (n = 14, age 23 ± 3 years), using cardiac magnetic resonance navigator-gated tissue phase mapping. The left ventricle was divided into 16 segments and regional wall motion was studied in high temporal detail. RESULTS: Corresponding to the expected timing of the reflected aortic wave reaching the left ventricle, a characteristic “notch” of regional myocardial motion was seen in all radial, circumferential, and longitudinal velocity graphs. This notch was particularly prominent in septal segments adjacent to the left ventricular outflow tract on radial velocity graphs and in anterior and posterior left ventricular segments on circumferential velocity graphs. Similarly, longitudinal velocity graphs demonstrated a brief deceleration in the upward recoil motion of the entire ventricle at the beginning of diastole. CONCLUSION: These results provide new insights into the possible influence of the reflected aortic waves on ventricular segments. Although the association with the reflected wave appears to us to be unambiguous, it represents a novel research concept, and further studies enabling the actual recording of the pulse wave are required. Dove Medical Press 2011 2011-06-08 /pmc/articles/PMC3119594/ /pubmed/21731888 http://dx.doi.org/10.2147/VHRM.S20845 Text en © 2011 Codreanu et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Codreanu, Ion
Robson, Matthew D
Rider, Oliver J
Pegg, Tammy J
Jung, Bernd A
Dasanu, Constantin A
Clarke, Kieran
Holloway, Cameron J
Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out
title Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out
title_full Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out
title_fullStr Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out
title_full_unstemmed Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out
title_short Chasing the reflected wave back into the heart: a new hypothesis while the jury is still out
title_sort chasing the reflected wave back into the heart: a new hypothesis while the jury is still out
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3119594/
https://www.ncbi.nlm.nih.gov/pubmed/21731888
http://dx.doi.org/10.2147/VHRM.S20845
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