Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent
10.1016/j.cad.2013.05.003
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sg-nus-scholar.10635-669942023-10-29T22:51:17Z Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent Praveen Kumar, G. Cui, F. Danpinid, A. Su, B. Hon, J.K.F. Leo, H.L. BIOENGINEERING Computer aided conceptual design Fatigue modeling Finite element analysis Mitral valve stent 10.1016/j.cad.2013.05.003 CAD Computer Aided Design 45 10 1153-1158 CAIDA 2014-06-17T09:43:09Z 2014-06-17T09:43:09Z 2013 Article Praveen Kumar, G., Cui, F., Danpinid, A., Su, B., Hon, J.K.F., Leo, H.L. (2013). Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent. CAD Computer Aided Design 45 (10) : 1153-1158. ScholarBank@NUS Repository. https://doi.org/10.1016/j.cad.2013.05.003 00104485 http://scholarbank.nus.edu.sg/handle/10635/66994 000321594200001 Scopus |
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Computer aided conceptual design Fatigue modeling Finite element analysis Mitral valve stent |
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Computer aided conceptual design Fatigue modeling Finite element analysis Mitral valve stent Praveen Kumar, G. Cui, F. Danpinid, A. Su, B. Hon, J.K.F. Leo, H.L. Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent |
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10.1016/j.cad.2013.05.003 |
author2 |
BIOENGINEERING |
author_facet |
BIOENGINEERING Praveen Kumar, G. Cui, F. Danpinid, A. Su, B. Hon, J.K.F. Leo, H.L. |
format |
Article |
author |
Praveen Kumar, G. Cui, F. Danpinid, A. Su, B. Hon, J.K.F. Leo, H.L. |
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Praveen Kumar, G. |
title |
Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent |
title_short |
Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent |
title_full |
Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent |
title_fullStr |
Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent |
title_full_unstemmed |
Design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent |
title_sort |
design and finite element-based fatigue prediction of a new self-expandable percutaneous mitral valve stent |
publishDate |
2014 |
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http://scholarbank.nus.edu.sg/handle/10635/66994 |
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1781782783860932608 |