Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescents

Purpose : Left ventricular (LV) hypertrophy and impaired diastolic function may occur early in systemic hypertension. Diastolic dysfunction is associated with increased cardiovascular risk. Tissue Doppler imaging (TDI)-derived tissue velocity and strain rate are new parameters for assessing diastoli...

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Main Authors: Hye Mi Ahn, Sun Ok Jung, Jung Hyun Kwon, Young Mi Hong
Format: Article
Language:English
Published: Korean Pediatric Society 2010-01-01
Series:Korean Journal of Pediatrics
Online Access:http://www.kjp.or.kr/upload/2010530111-20100227173127.PDF
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spelling doaj-44ae9ab0879e4484b2f45506f32195f12020-11-25T00:58:23ZengKorean Pediatric SocietyKorean Journal of Pediatrics1738-10612092-72582010-01-01531727910.3345/kjp.2010.53.1.72Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescentsHye Mi AhnSun Ok JungJung Hyun KwonYoung Mi HongPurpose : Left ventricular (LV) hypertrophy and impaired diastolic function may occur early in systemic hypertension. Diastolic dysfunction is associated with increased cardiovascular risk. Tissue Doppler imaging (TDI)-derived tissue velocity and strain rate are new parameters for assessing diastolic dysfunction. The aim of this study is to determine whether TDI and strain rate imaging (SRI) would improve the ability to recognize early impaired diastolic and systolic functions compared with conventional echocardiography in hypertensive adolescents. Methods : We included 38 hypertensive patients with systolic blood pressure above 140 mmHg or diastolic blood pressure above 90 mmHg. Ejection fraction and myocardial performance index (MPI) were estimated by conventional echocardiography. Peak systolic myocardial velocity, early diastolic myocardial velocity (Em), and peak late diastolic myocardial velocity (Am) were obtained by using TDI and SRI. Results : In the hypertensive group, interventricular septal thickness was significantly increased on M-mode echocardiography. Em/Am was significantly decreased at the mitral valve annulus. Among hypertensive subjects, the E strain rate at basal, mid, and apex was significantly decreased. Systolic strain was significantly decreased at the septum in the hypertensive group. Conclusion : Strain rate might be a useful new parameter for the quantification of both regional and global LV functions and could be used in long-term follow up in hypertensive patients. Early identification by SRI of subjects at risk for hypertensive and ventricular dysfunction may help to stratify risk and guide therapy. Further studies, including serial assessment of LV structure and function in a larger number of adolescents with hypertension, is necessary.http://www.kjp.or.kr/upload/2010530111-20100227173127.PDF
collection DOAJ
language English
format Article
sources DOAJ
author Hye Mi Ahn
Sun Ok Jung
Jung Hyun Kwon
Young Mi Hong
spellingShingle Hye Mi Ahn
Sun Ok Jung
Jung Hyun Kwon
Young Mi Hong
Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescents
Korean Journal of Pediatrics
author_facet Hye Mi Ahn
Sun Ok Jung
Jung Hyun Kwon
Young Mi Hong
author_sort Hye Mi Ahn
title Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescents
title_short Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescents
title_full Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescents
title_fullStr Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescents
title_full_unstemmed Left ventricular dysfunction measured by tissue Doppler imaging and strain rate imaging in hypertensive adolescents
title_sort left ventricular dysfunction measured by tissue doppler imaging and strain rate imaging in hypertensive adolescents
publisher Korean Pediatric Society
series Korean Journal of Pediatrics
issn 1738-1061
2092-7258
publishDate 2010-01-01
description Purpose : Left ventricular (LV) hypertrophy and impaired diastolic function may occur early in systemic hypertension. Diastolic dysfunction is associated with increased cardiovascular risk. Tissue Doppler imaging (TDI)-derived tissue velocity and strain rate are new parameters for assessing diastolic dysfunction. The aim of this study is to determine whether TDI and strain rate imaging (SRI) would improve the ability to recognize early impaired diastolic and systolic functions compared with conventional echocardiography in hypertensive adolescents. Methods : We included 38 hypertensive patients with systolic blood pressure above 140 mmHg or diastolic blood pressure above 90 mmHg. Ejection fraction and myocardial performance index (MPI) were estimated by conventional echocardiography. Peak systolic myocardial velocity, early diastolic myocardial velocity (Em), and peak late diastolic myocardial velocity (Am) were obtained by using TDI and SRI. Results : In the hypertensive group, interventricular septal thickness was significantly increased on M-mode echocardiography. Em/Am was significantly decreased at the mitral valve annulus. Among hypertensive subjects, the E strain rate at basal, mid, and apex was significantly decreased. Systolic strain was significantly decreased at the septum in the hypertensive group. Conclusion : Strain rate might be a useful new parameter for the quantification of both regional and global LV functions and could be used in long-term follow up in hypertensive patients. Early identification by SRI of subjects at risk for hypertensive and ventricular dysfunction may help to stratify risk and guide therapy. Further studies, including serial assessment of LV structure and function in a larger number of adolescents with hypertension, is necessary.
url http://www.kjp.or.kr/upload/2010530111-20100227173127.PDF
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