A power-law rheology-based finite element model for single cell deformation

10.1007/s10237-012-0374-y

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Main Authors: Zhou, E.H., Xu, F., Quek, S.T., Lim, C.T.
Other Authors: CIVIL & ENVIRONMENTAL ENGINEERING
Format: Article
Published: 2014
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Online Access:http://scholarbank.nus.edu.sg/handle/10635/50817
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-508172024-11-11T22:04:38Z A power-law rheology-based finite element model for single cell deformation Zhou, E.H. Xu, F. Quek, S.T. Lim, C.T. CIVIL & ENVIRONMENTAL ENGINEERING BIOENGINEERING Cell injury Cell mechanics Finite element analysis Mechanotransduction Soft glassy rheology 10.1007/s10237-012-0374-y Biomechanics and Modeling in Mechanobiology 11 7 1075-1084 2014-04-24T03:22:40Z 2014-04-24T03:22:40Z 2012-09 Article Zhou, E.H., Xu, F., Quek, S.T., Lim, C.T. (2012-09). A power-law rheology-based finite element model for single cell deformation. Biomechanics and Modeling in Mechanobiology 11 (7) : 1075-1084. ScholarBank@NUS Repository. https://doi.org/10.1007/s10237-012-0374-y 16177959 http://scholarbank.nus.edu.sg/handle/10635/50817 000307511500012 Scopus
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Cell injury
Cell mechanics
Finite element analysis
Mechanotransduction
Soft glassy rheology
spellingShingle Cell injury
Cell mechanics
Finite element analysis
Mechanotransduction
Soft glassy rheology
Zhou, E.H.
Xu, F.
Quek, S.T.
Lim, C.T.
A power-law rheology-based finite element model for single cell deformation
description 10.1007/s10237-012-0374-y
author2 CIVIL & ENVIRONMENTAL ENGINEERING
author_facet CIVIL & ENVIRONMENTAL ENGINEERING
Zhou, E.H.
Xu, F.
Quek, S.T.
Lim, C.T.
format Article
author Zhou, E.H.
Xu, F.
Quek, S.T.
Lim, C.T.
author_sort Zhou, E.H.
title A power-law rheology-based finite element model for single cell deformation
title_short A power-law rheology-based finite element model for single cell deformation
title_full A power-law rheology-based finite element model for single cell deformation
title_fullStr A power-law rheology-based finite element model for single cell deformation
title_full_unstemmed A power-law rheology-based finite element model for single cell deformation
title_sort power-law rheology-based finite element model for single cell deformation
publishDate 2014
url http://scholarbank.nus.edu.sg/handle/10635/50817
_version_ 1821198751401771008