Some results on the simulation of the elastomechanics of ventricle

The imaging of the heart motion plays an important role in the medical science. To support in reaching this goal a simple heart phantom was developed at our research group. This phantom was made of silicon rubber, has a cup form and can beused in the analysis of the dynamics of a beating heart. Th...

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Main Authors: Sediono, Wahju, Dössel, Olaf
Format: Proceeding Paper
Language:English
Published: Walter de Gruyter GmbH & Co. KG 2002
Subjects:
Online Access:http://irep.iium.edu.my/3536/1/08a.cv_sed.paper.2002.issm.pdf
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author Sediono, Wahju
Dössel, Olaf
author_facet Sediono, Wahju
Dössel, Olaf
author_sort Sediono, Wahju
collection IIUM
description The imaging of the heart motion plays an important role in the medical science. To support in reaching this goal a simple heart phantom was developed at our research group. This phantom was made of silicon rubber, has a cup form and can beused in the analysis of the dynamics of a beating heart. The hyper elastic properties of the silicon rubber used in the manufacturing of the phantom were determined using Mooney-Rivlin material model. The determination of material parameters was based on a systematic analysis of stress-strain curves reported in the literature. The previously determined material parameters were subsequently implemented in the simulations of the heart’s elastomechanics. A series of simulations with various finite element models of the heart was carried out. The accomplished simulations have also involved a pathological case, where parts of regions within the heart are not contracted.
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spelling oai:generic.eprints.org:35362013-09-10T06:18:30Z http://irep.iium.edu.my/3536/ Some results on the simulation of the elastomechanics of ventricle Sediono, Wahju Dössel, Olaf TA164 Bioengineering TK7885 Computer engineering The imaging of the heart motion plays an important role in the medical science. To support in reaching this goal a simple heart phantom was developed at our research group. This phantom was made of silicon rubber, has a cup form and can beused in the analysis of the dynamics of a beating heart. The hyper elastic properties of the silicon rubber used in the manufacturing of the phantom were determined using Mooney-Rivlin material model. The determination of material parameters was based on a systematic analysis of stress-strain curves reported in the literature. The previously determined material parameters were subsequently implemented in the simulations of the heart’s elastomechanics. A series of simulations with various finite element models of the heart was carried out. The accomplished simulations have also involved a pathological case, where parts of regions within the heart are not contracted. Walter de Gruyter GmbH & Co. KG 2002 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/3536/1/08a.cv_sed.paper.2002.issm.pdf Sediono, Wahju and Dössel, Olaf (2002) Some results on the simulation of the elastomechanics of ventricle. In: Proc. ISSM 2002, 2002, Berlin, Germany.
spellingShingle TA164 Bioengineering
TK7885 Computer engineering
Sediono, Wahju
Dössel, Olaf
Some results on the simulation of the elastomechanics of ventricle
title Some results on the simulation of the elastomechanics of ventricle
title_full Some results on the simulation of the elastomechanics of ventricle
title_fullStr Some results on the simulation of the elastomechanics of ventricle
title_full_unstemmed Some results on the simulation of the elastomechanics of ventricle
title_short Some results on the simulation of the elastomechanics of ventricle
title_sort some results on the simulation of the elastomechanics of ventricle
topic TA164 Bioengineering
TK7885 Computer engineering
url http://irep.iium.edu.my/3536/1/08a.cv_sed.paper.2002.issm.pdf
work_keys_str_mv AT sedionowahju someresultsonthesimulationoftheelastomechanicsofventricle
AT dosselolaf someresultsonthesimulationoftheelastomechanicsofventricle