Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature
10.1038/s41598-018-24123-6
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sg-nus-scholar.10635-1750252023-09-13T10:40:34Z Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature Zeng, Y Wong, S.T Teo, S.K Leong, K.W Chiam, K.-H Yim, E.K.F MECHANOBIOLOGY INSTITUTE epoxy resin spurr resin biological model cell culture technique cell differentiation cell membrane cell proliferation chemistry devices human mesenchymal stem cell metabolism physiology procedures theoretical model tissue engineering tissue scaffold transmission electron microscopy Cell Culture Techniques Cell Differentiation Cell Membrane Cell Proliferation Epoxy Resins Humans Mesenchymal Stem Cells Microscopy, Electron, Transmission Models, Biological Models, Theoretical Tissue Engineering Tissue Scaffolds 10.1038/s41598-018-24123-6 Scientific Reports 8 1 6444 2020-09-09T03:03:41Z 2020-09-09T03:03:41Z 2018 Article Zeng, Y, Wong, S.T, Teo, S.K, Leong, K.W, Chiam, K.-H, Yim, E.K.F (2018). Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature. Scientific Reports 8 (1) : 6444. ScholarBank@NUS Repository. https://doi.org/10.1038/s41598-018-24123-6 20452322 https://scholarbank.nus.edu.sg/handle/10635/175025 Unpaywall 20200831 |
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epoxy resin spurr resin biological model cell culture technique cell differentiation cell membrane cell proliferation chemistry devices human mesenchymal stem cell metabolism physiology procedures theoretical model tissue engineering tissue scaffold transmission electron microscopy Cell Culture Techniques Cell Differentiation Cell Membrane Cell Proliferation Epoxy Resins Humans Mesenchymal Stem Cells Microscopy, Electron, Transmission Models, Biological Models, Theoretical Tissue Engineering Tissue Scaffolds |
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epoxy resin spurr resin biological model cell culture technique cell differentiation cell membrane cell proliferation chemistry devices human mesenchymal stem cell metabolism physiology procedures theoretical model tissue engineering tissue scaffold transmission electron microscopy Cell Culture Techniques Cell Differentiation Cell Membrane Cell Proliferation Epoxy Resins Humans Mesenchymal Stem Cells Microscopy, Electron, Transmission Models, Biological Models, Theoretical Tissue Engineering Tissue Scaffolds Zeng, Y Wong, S.T Teo, S.K Leong, K.W Chiam, K.-H Yim, E.K.F Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature |
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10.1038/s41598-018-24123-6 |
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MECHANOBIOLOGY INSTITUTE |
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MECHANOBIOLOGY INSTITUTE Zeng, Y Wong, S.T Teo, S.K Leong, K.W Chiam, K.-H Yim, E.K.F |
format |
Article |
author |
Zeng, Y Wong, S.T Teo, S.K Leong, K.W Chiam, K.-H Yim, E.K.F |
author_sort |
Zeng, Y |
title |
Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature |
title_short |
Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature |
title_full |
Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature |
title_fullStr |
Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature |
title_full_unstemmed |
Human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature |
title_sort |
human mesenchymal stem cell basal membrane bending on gratings is dependent on both grating width and curvature |
publishDate |
2020 |
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https://scholarbank.nus.edu.sg/handle/10635/175025 |
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