Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle tracking

<p>Abstract</p> <p>Recent developments in the field of echocardiography have allowed the cardiologist to objectively quantify regional and global myocardial function. Regional deformation (strain) and deformation rate (strain-rate) can be calculated non-invasively in both the left...

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Main Authors: Sieswerda Gertjan T, Melman Paul G, De Boeck Bart WL, Teske Arco J, Doevendans Pieter A, Cramer Maarten JM
Format: Article
Language:English
Published: BMC 2007-08-01
Series:Cardiovascular Ultrasound
Online Access:http://www.cardiovascularultrasound.com/content/5/1/27
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spelling doaj-cfcbb68b69894b82bd6f99d361ca60e32020-11-24T22:00:05ZengBMCCardiovascular Ultrasound1476-71202007-08-01512710.1186/1476-7120-5-27Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle trackingSieswerda Gertjan TMelman Paul GDe Boeck Bart WLTeske Arco JDoevendans Pieter ACramer Maarten JM<p>Abstract</p> <p>Recent developments in the field of echocardiography have allowed the cardiologist to objectively quantify regional and global myocardial function. Regional deformation (strain) and deformation rate (strain-rate) can be calculated non-invasively in both the left and right ventricle, providing information on regional (dys-)function in a variety of clinical settings. Although this promising novel technique is increasingly applied in clinical and preclinical research, knowledge about the principles, limitations and technical issues of this technique is mandatory for reliable results and for implementation both in the clinical as well as the scientific field.</p> <p>In this article, we aim to explain the fundamental concepts and potential clinical applicability of strain and strain-rate for both tissue Doppler imaging (TDI) derived and speckle tracking (2D-strain) derived deformation imaging. In addition, a step-by-step approach to image acquisition and post processing is proposed. Finally, clinical examples of deformation imaging in hypertrophic cardiomyopathy (HCM), cardiac resynchronization therapy (CRT) and arrhythmogenic right ventricular dysplasia/cardiomyopathy (ARVD/C) are presented.</p> http://www.cardiovascularultrasound.com/content/5/1/27
collection DOAJ
language English
format Article
sources DOAJ
author Sieswerda Gertjan T
Melman Paul G
De Boeck Bart WL
Teske Arco J
Doevendans Pieter A
Cramer Maarten JM
spellingShingle Sieswerda Gertjan T
Melman Paul G
De Boeck Bart WL
Teske Arco J
Doevendans Pieter A
Cramer Maarten JM
Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle tracking
Cardiovascular Ultrasound
author_facet Sieswerda Gertjan T
Melman Paul G
De Boeck Bart WL
Teske Arco J
Doevendans Pieter A
Cramer Maarten JM
author_sort Sieswerda Gertjan T
title Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle tracking
title_short Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle tracking
title_full Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle tracking
title_fullStr Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle tracking
title_full_unstemmed Echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue Doppler and speckle tracking
title_sort echocardiographic quantification of myocardial function using tissue deformation imaging, a guide to image acquisition and analysis using tissue doppler and speckle tracking
publisher BMC
series Cardiovascular Ultrasound
issn 1476-7120
publishDate 2007-08-01
description <p>Abstract</p> <p>Recent developments in the field of echocardiography have allowed the cardiologist to objectively quantify regional and global myocardial function. Regional deformation (strain) and deformation rate (strain-rate) can be calculated non-invasively in both the left and right ventricle, providing information on regional (dys-)function in a variety of clinical settings. Although this promising novel technique is increasingly applied in clinical and preclinical research, knowledge about the principles, limitations and technical issues of this technique is mandatory for reliable results and for implementation both in the clinical as well as the scientific field.</p> <p>In this article, we aim to explain the fundamental concepts and potential clinical applicability of strain and strain-rate for both tissue Doppler imaging (TDI) derived and speckle tracking (2D-strain) derived deformation imaging. In addition, a step-by-step approach to image acquisition and post processing is proposed. Finally, clinical examples of deformation imaging in hypertrophic cardiomyopathy (HCM), cardiac resynchronization therapy (CRT) and arrhythmogenic right ventricular dysplasia/cardiomyopathy (ARVD/C) are presented.</p>
url http://www.cardiovascularultrasound.com/content/5/1/27
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