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A multidimensional dynamic quantification tool for the mitral valve / A Hossien, Perumal Nithiarasu, E Cheriex, J Maessen, P Sardari Nia, S Ashraf

Interactive CardioVascular and Thoracic Surgery

Swansea University Author: Perumal Nithiarasu

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DOI (Published version): 10.1093/icvts/ivv187

Abstract

The mitral valve (MV) is a complex three-dimensional (3D) intracardiac structure. 3D transthoracic and transoesophagealechocardiography are used to evaluate and describe the changes in the mitral valve apparatus due to degenerative or functional mitral regurgitation. These techniques are, however, n...

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Published in: Interactive CardioVascular and Thoracic Surgery
Published: 2015
URI: https://cronfa.swan.ac.uk/Record/cronfa22674
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first_indexed 2015-07-28T02:04:17Z
last_indexed 2018-02-09T05:01:05Z
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recordtype SURis
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spelling 2016-02-18T12:16:55.4963156 v2 22674 2015-07-27 A multidimensional dynamic quantification tool for the mitral valve 3b28bf59358fc2b9bd9a46897dbfc92d 0000-0002-4901-2980 Perumal Nithiarasu Perumal Nithiarasu true false 2015-07-27 CIVL The mitral valve (MV) is a complex three-dimensional (3D) intracardiac structure. 3D transthoracic and transoesophagealechocardiography are used to evaluate and describe the changes in the mitral valve apparatus due to degenerative or functional mitral regurgitation. These techniques are, however, not accurate enough to capture the dynamic changes during the cardiac cycle. We describe anovel multistage modelling (MSM) technique, using three-dimensional transoesophageal echocardiography (3D TOE), to visualize andquantify the MV during all the phases of the cardiac cycle. Journal Article Interactive CardioVascular and Thoracic Surgery Mitral valve, Multidimensional modelling, Quantification 13 7 2015 2015-07-13 10.1093/icvts/ivv187 COLLEGE NANME Civil Engineering COLLEGE CODE CIVL Swansea University 2016-02-18T12:16:55.4963156 2015-07-27T20:02:04.1174751 College of Engineering Engineering A Hossien 1 Perumal Nithiarasu 0000-0002-4901-2980 2 E Cheriex 3 J Maessen 4 P Sardari Nia 5 S Ashraf 6
title A multidimensional dynamic quantification tool for the mitral valve
spellingShingle A multidimensional dynamic quantification tool for the mitral valve
Perumal, Nithiarasu
title_short A multidimensional dynamic quantification tool for the mitral valve
title_full A multidimensional dynamic quantification tool for the mitral valve
title_fullStr A multidimensional dynamic quantification tool for the mitral valve
title_full_unstemmed A multidimensional dynamic quantification tool for the mitral valve
title_sort A multidimensional dynamic quantification tool for the mitral valve
author_id_str_mv 3b28bf59358fc2b9bd9a46897dbfc92d
author_id_fullname_str_mv 3b28bf59358fc2b9bd9a46897dbfc92d_***_Perumal, Nithiarasu
author Perumal, Nithiarasu
author2 A Hossien
Perumal Nithiarasu
E Cheriex
J Maessen
P Sardari Nia
S Ashraf
format Journal article
container_title Interactive CardioVascular and Thoracic Surgery
publishDate 2015
institution Swansea University
doi_str_mv 10.1093/icvts/ivv187
college_str College of Engineering
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hierarchy_top_id collegeofengineering
hierarchy_top_title College of Engineering
hierarchy_parent_id collegeofengineering
hierarchy_parent_title College of Engineering
department_str Engineering{{{_:::_}}}College of Engineering{{{_:::_}}}Engineering
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description The mitral valve (MV) is a complex three-dimensional (3D) intracardiac structure. 3D transthoracic and transoesophagealechocardiography are used to evaluate and describe the changes in the mitral valve apparatus due to degenerative or functional mitral regurgitation. These techniques are, however, not accurate enough to capture the dynamic changes during the cardiac cycle. We describe anovel multistage modelling (MSM) technique, using three-dimensional transoesophageal echocardiography (3D TOE), to visualize andquantify the MV during all the phases of the cardiac cycle.
published_date 2015-07-13T03:36:36Z
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score 10.832179