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A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts

Aim: Mechanical dyssynchrony (MD) is associated with heart failure (HF) and may be prognostically important in cardiac resynchronization therapy (CRT). Yet, little is known about its patterns in healthy or diseased hearts. We here investigate and compare systolic and diastolic MD in both right (RV)...

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Autores principales: Zhu, Tiangang, Lei, Ming, Wang, Zhilong, Zhang, Rongli, Zhang, Yan, Jin, Wenying, Yu, Chao, Huang, Christopher L.-H., Liu, Dongyue, Zheng, Wen, Liu, Yuli, Quan, Xin, Kong, Lingyun, Liang, Siying, Zhang, Xiuqin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8581184/
https://www.ncbi.nlm.nih.gov/pubmed/34778406
http://dx.doi.org/10.3389/fcvm.2021.750067
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author Zhu, Tiangang
Lei, Ming
Wang, Zhilong
Zhang, Rongli
Zhang, Yan
Jin, Wenying
Yu, Chao
Huang, Christopher L.-H.
Liu, Dongyue
Zheng, Wen
Liu, Yuli
Quan, Xin
Kong, Lingyun
Liang, Siying
Zhang, Xiuqin
author_facet Zhu, Tiangang
Lei, Ming
Wang, Zhilong
Zhang, Rongli
Zhang, Yan
Jin, Wenying
Yu, Chao
Huang, Christopher L.-H.
Liu, Dongyue
Zheng, Wen
Liu, Yuli
Quan, Xin
Kong, Lingyun
Liang, Siying
Zhang, Xiuqin
author_sort Zhu, Tiangang
collection PubMed
description Aim: Mechanical dyssynchrony (MD) is associated with heart failure (HF) and may be prognostically important in cardiac resynchronization therapy (CRT). Yet, little is known about its patterns in healthy or diseased hearts. We here investigate and compare systolic and diastolic MD in both right (RV) and left ventricles (LV) of canine, primate and healthy and failing human hearts. Methods and Results: RV and LV mechanical function were examined by pulse-wave Doppler in 15 beagle dogs, 59 rhesus monkeys, 100 healthy human subjects and 39 heart failure (HF) patients. This measured RV and LV pre-ejection periods (RVPEP and LVPEP) and diastolic opening times (Q-TVE and Q-MVE). The occurrence of right (RVMDs) and left ventricular systolic mechanical delay (LVMDs) was assessed by comparing RVPEP and LVPEP values. That of right (RVMDd) and left ventricular diastolic mechanical delay (LVMDd) was assessed from the corresponding diastolic opening times (Q-TVE and Q-MVE). These situations were quantified by values of interventricular systolic (IVMDs) and diastolic mechanical delays (IVMDd), represented as positive if the relevant RV mechanical events preceded those in the LV. Healthy hearts in all species examined showed greater LV than RV delay times and therefore positive IVMDs and IVMDd. In contrast a greater proportion of the HF patients showed both markedly increased IVMDs and negative IVMDd, with diastolic mechanical asynchrony negatively correlated with LVEF. Conclusion: The present IVMDs and IVMDd findings have potential clinical implications particularly for personalized setting of parameter values in CRT in individual patients to achieve effective treatment of HF.
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spelling pubmed-85811842021-11-12 A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts Zhu, Tiangang Lei, Ming Wang, Zhilong Zhang, Rongli Zhang, Yan Jin, Wenying Yu, Chao Huang, Christopher L.-H. Liu, Dongyue Zheng, Wen Liu, Yuli Quan, Xin Kong, Lingyun Liang, Siying Zhang, Xiuqin Front Cardiovasc Med Cardiovascular Medicine Aim: Mechanical dyssynchrony (MD) is associated with heart failure (HF) and may be prognostically important in cardiac resynchronization therapy (CRT). Yet, little is known about its patterns in healthy or diseased hearts. We here investigate and compare systolic and diastolic MD in both right (RV) and left ventricles (LV) of canine, primate and healthy and failing human hearts. Methods and Results: RV and LV mechanical function were examined by pulse-wave Doppler in 15 beagle dogs, 59 rhesus monkeys, 100 healthy human subjects and 39 heart failure (HF) patients. This measured RV and LV pre-ejection periods (RVPEP and LVPEP) and diastolic opening times (Q-TVE and Q-MVE). The occurrence of right (RVMDs) and left ventricular systolic mechanical delay (LVMDs) was assessed by comparing RVPEP and LVPEP values. That of right (RVMDd) and left ventricular diastolic mechanical delay (LVMDd) was assessed from the corresponding diastolic opening times (Q-TVE and Q-MVE). These situations were quantified by values of interventricular systolic (IVMDs) and diastolic mechanical delays (IVMDd), represented as positive if the relevant RV mechanical events preceded those in the LV. Healthy hearts in all species examined showed greater LV than RV delay times and therefore positive IVMDs and IVMDd. In contrast a greater proportion of the HF patients showed both markedly increased IVMDs and negative IVMDd, with diastolic mechanical asynchrony negatively correlated with LVEF. Conclusion: The present IVMDs and IVMDd findings have potential clinical implications particularly for personalized setting of parameter values in CRT in individual patients to achieve effective treatment of HF. Frontiers Media S.A. 2021-10-28 /pmc/articles/PMC8581184/ /pubmed/34778406 http://dx.doi.org/10.3389/fcvm.2021.750067 Text en Copyright © 2021 Zhu, Lei, Wang, Zhang, Zhang, Jin, Yu, Huang, Liu, Zheng, Liu, Quan, Kong, Liang and Zhang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cardiovascular Medicine
Zhu, Tiangang
Lei, Ming
Wang, Zhilong
Zhang, Rongli
Zhang, Yan
Jin, Wenying
Yu, Chao
Huang, Christopher L.-H.
Liu, Dongyue
Zheng, Wen
Liu, Yuli
Quan, Xin
Kong, Lingyun
Liang, Siying
Zhang, Xiuqin
A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts
title A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts
title_full A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts
title_fullStr A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts
title_full_unstemmed A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts
title_short A Comparative Study of Systolic and Diastolic Mechanical Synchrony in Canine, Primate, and Healthy and Failing Human Hearts
title_sort comparative study of systolic and diastolic mechanical synchrony in canine, primate, and healthy and failing human hearts
topic Cardiovascular Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8581184/
https://www.ncbi.nlm.nih.gov/pubmed/34778406
http://dx.doi.org/10.3389/fcvm.2021.750067
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