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Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation

This study aims to assess the usefulness of strain‐encoded magnetic resonance (SENC) for the quantification of myocardial deformation (‘strain’) in healthy volunteers and for the diagnostic workup of patients with different cardiovascular pathologies. SENC was initially described in the year 2001. S...

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Autores principales: Korosoglou, Grigorios, Giusca, Sorin, Hofmann, Nina P., Patel, Amit R., Lapinskas, Tomas, Pieske, Burkert, Steen, Henning, Katus, Hugo A., Kelle, Sebastian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6676282/
https://www.ncbi.nlm.nih.gov/pubmed/31021534
http://dx.doi.org/10.1002/ehf2.12442
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author Korosoglou, Grigorios
Giusca, Sorin
Hofmann, Nina P.
Patel, Amit R.
Lapinskas, Tomas
Pieske, Burkert
Steen, Henning
Katus, Hugo A.
Kelle, Sebastian
author_facet Korosoglou, Grigorios
Giusca, Sorin
Hofmann, Nina P.
Patel, Amit R.
Lapinskas, Tomas
Pieske, Burkert
Steen, Henning
Katus, Hugo A.
Kelle, Sebastian
author_sort Korosoglou, Grigorios
collection PubMed
description This study aims to assess the usefulness of strain‐encoded magnetic resonance (SENC) for the quantification of myocardial deformation (‘strain’) in healthy volunteers and for the diagnostic workup of patients with different cardiovascular pathologies. SENC was initially described in the year 2001. Since then, the SENC sequence has undergone several technical developments, aiming at the detection of strain during single‐heartbeat acquisitions (fast‐SENC). Experimental and clinical studies that used SENC and fast‐SENC or compared SENC with conventional cine or tagged magnetic resonance in phantoms, animals, healthy volunteers, or patients were systematically searched for in PubMed. Using ‘strain‐encoded magnetic resonance and SENC’ as keywords, three phantom and three animal studies were identified, along with 27 further clinical studies, involving 185 healthy subjects and 904 patients. SENC (i) enabled reproducible assessment of myocardial deformation in vitro, in animals and in healthy volunteers, (ii) showed high reproducibility and substantially lower time spent compared with conventional tagging, (iii) exhibited incremental value to standard cine imaging for the detection of inducible ischaemia and for the risk stratification of patients with ischaemic heart disease, and (iv) enabled the diagnostic classification of patients with transplant vasculopathy, cardiomyopathies, pulmonary hypertension, and diabetic heart disease. SENC has the potential to detect a wide range of myocardial diseases early, accurately, and without the need of contrast agent injection, possibly enabling the initiation of specific cardiac therapies during earlier disease stages. Its one‐heartbeat acquisition mode during free breathing results in shorter cardiovascular magnetic resonance protocols, making its implementation in the clinical realm promising.
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spelling pubmed-66762822019-08-06 Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation Korosoglou, Grigorios Giusca, Sorin Hofmann, Nina P. Patel, Amit R. Lapinskas, Tomas Pieske, Burkert Steen, Henning Katus, Hugo A. Kelle, Sebastian ESC Heart Fail Review This study aims to assess the usefulness of strain‐encoded magnetic resonance (SENC) for the quantification of myocardial deformation (‘strain’) in healthy volunteers and for the diagnostic workup of patients with different cardiovascular pathologies. SENC was initially described in the year 2001. Since then, the SENC sequence has undergone several technical developments, aiming at the detection of strain during single‐heartbeat acquisitions (fast‐SENC). Experimental and clinical studies that used SENC and fast‐SENC or compared SENC with conventional cine or tagged magnetic resonance in phantoms, animals, healthy volunteers, or patients were systematically searched for in PubMed. Using ‘strain‐encoded magnetic resonance and SENC’ as keywords, three phantom and three animal studies were identified, along with 27 further clinical studies, involving 185 healthy subjects and 904 patients. SENC (i) enabled reproducible assessment of myocardial deformation in vitro, in animals and in healthy volunteers, (ii) showed high reproducibility and substantially lower time spent compared with conventional tagging, (iii) exhibited incremental value to standard cine imaging for the detection of inducible ischaemia and for the risk stratification of patients with ischaemic heart disease, and (iv) enabled the diagnostic classification of patients with transplant vasculopathy, cardiomyopathies, pulmonary hypertension, and diabetic heart disease. SENC has the potential to detect a wide range of myocardial diseases early, accurately, and without the need of contrast agent injection, possibly enabling the initiation of specific cardiac therapies during earlier disease stages. Its one‐heartbeat acquisition mode during free breathing results in shorter cardiovascular magnetic resonance protocols, making its implementation in the clinical realm promising. John Wiley and Sons Inc. 2019-04-25 /pmc/articles/PMC6676282/ /pubmed/31021534 http://dx.doi.org/10.1002/ehf2.12442 Text en © 2019 The Authors. ESC Heart Failure published by John Wiley & Sons Ltd on behalf of European Society of Cardiology. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Review
Korosoglou, Grigorios
Giusca, Sorin
Hofmann, Nina P.
Patel, Amit R.
Lapinskas, Tomas
Pieske, Burkert
Steen, Henning
Katus, Hugo A.
Kelle, Sebastian
Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation
title Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation
title_full Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation
title_fullStr Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation
title_full_unstemmed Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation
title_short Strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation
title_sort strain‐encoded magnetic resonance: a method for the assessment of myocardial deformation
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6676282/
https://www.ncbi.nlm.nih.gov/pubmed/31021534
http://dx.doi.org/10.1002/ehf2.12442
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