Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization
10.1002/cnm.2982
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sg-nus-scholar.10635-2266952023-08-30T22:07:58Z Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization Finsberg, Henrik Xi, Ce Tan, Ju Le Zhong, Liang Genet, Martin Sundnes, Joakim Lee, Lik Chuan Wall, Samuel T DEAN'S OFFICE (DUKE-NUS MEDICAL SCHOOL) Science & Technology Technology Life Sciences & Biomedicine Physical Sciences Engineering, Biomedical Mathematical & Computational Biology Mathematics, Interdisciplinary Applications Engineering Mathematics cardiac mechanics contractility estimation data assimilation parameter estimation patient specific simulations stress estimation VENTRICULAR-WALL STRESS FINITE-ELEMENT MODEL PRESSURE-VOLUME RELATION UNLOADED CONFIGURATION FIBER ORIENTATION DATA ASSIMILATION CARDIAC-FUNCTION HEART MODEL CINE-MRI DIASTOLE 10.1002/cnm.2982 INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING 34 7 2022-06-08T03:00:49Z 2022-06-08T03:00:49Z 2018-07-01 2022-06-07T06:21:02Z Article Finsberg, Henrik, Xi, Ce, Tan, Ju Le, Zhong, Liang, Genet, Martin, Sundnes, Joakim, Lee, Lik Chuan, Wall, Samuel T (2018-07-01). Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization. INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING 34 (7). ScholarBank@NUS Repository. https://doi.org/10.1002/cnm.2982 20407939 20407947 https://scholarbank.nus.edu.sg/handle/10635/226695 en WILEY Elements |
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Science & Technology Technology Life Sciences & Biomedicine Physical Sciences Engineering, Biomedical Mathematical & Computational Biology Mathematics, Interdisciplinary Applications Engineering Mathematics cardiac mechanics contractility estimation data assimilation parameter estimation patient specific simulations stress estimation VENTRICULAR-WALL STRESS FINITE-ELEMENT MODEL PRESSURE-VOLUME RELATION UNLOADED CONFIGURATION FIBER ORIENTATION DATA ASSIMILATION CARDIAC-FUNCTION HEART MODEL CINE-MRI DIASTOLE |
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Science & Technology Technology Life Sciences & Biomedicine Physical Sciences Engineering, Biomedical Mathematical & Computational Biology Mathematics, Interdisciplinary Applications Engineering Mathematics cardiac mechanics contractility estimation data assimilation parameter estimation patient specific simulations stress estimation VENTRICULAR-WALL STRESS FINITE-ELEMENT MODEL PRESSURE-VOLUME RELATION UNLOADED CONFIGURATION FIBER ORIENTATION DATA ASSIMILATION CARDIAC-FUNCTION HEART MODEL CINE-MRI DIASTOLE Finsberg, Henrik Xi, Ce Tan, Ju Le Zhong, Liang Genet, Martin Sundnes, Joakim Lee, Lik Chuan Wall, Samuel T Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization |
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10.1002/cnm.2982 |
author2 |
DEAN'S OFFICE (DUKE-NUS MEDICAL SCHOOL) |
author_facet |
DEAN'S OFFICE (DUKE-NUS MEDICAL SCHOOL) Finsberg, Henrik Xi, Ce Tan, Ju Le Zhong, Liang Genet, Martin Sundnes, Joakim Lee, Lik Chuan Wall, Samuel T |
format |
Article |
author |
Finsberg, Henrik Xi, Ce Tan, Ju Le Zhong, Liang Genet, Martin Sundnes, Joakim Lee, Lik Chuan Wall, Samuel T |
author_sort |
Finsberg, Henrik |
title |
Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization |
title_short |
Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization |
title_full |
Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization |
title_fullStr |
Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization |
title_full_unstemmed |
Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization |
title_sort |
efficient estimation of personalized biventricular mechanical function employing gradient-based optimization |
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WILEY |
publishDate |
2022 |
url |
https://scholarbank.nus.edu.sg/handle/10635/226695 |
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1779154809186680832 |