Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion
10.1016/j.actbio.2015.02.016
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sg-nus-scholar.10635-1231972023-10-27T08:28:39Z Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion Kasputis, Tadas Pieper, Alex Rodenhausen, Keith Brian Rian Schmidt, Daniel R. Sekora, Derek G. Rice, Charles Schubert, Eva Schubert, Mathias M. Pannier, Angela Kaye SINGAPORE SYNCHROTRON LIGHT SOURCE 10.1016/j.actbio.2015.02.016 Acta Biomaterialia 18 88-99 2016-04-29T06:03:16Z 2016-04-29T06:03:16Z 2015 Article Kasputis, Tadas, Pieper, Alex, Rodenhausen, Keith Brian Rian, Schmidt, Daniel R., Sekora, Derek G., Rice, Charles, Schubert, Eva, Schubert, Mathias M., Pannier, Angela Kaye (2015). Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion. Acta Biomaterialia 18 : 88-99. ScholarBank@NUS Repository. https://doi.org/10.1016/j.actbio.2015.02.016 17427061 http://scholarbank.nus.edu.sg/handle/10635/123197 000353605300010 Elsevier |
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10.1016/j.actbio.2015.02.016 |
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SINGAPORE SYNCHROTRON LIGHT SOURCE |
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SINGAPORE SYNCHROTRON LIGHT SOURCE Kasputis, Tadas Pieper, Alex Rodenhausen, Keith Brian Rian Schmidt, Daniel R. Sekora, Derek G. Rice, Charles Schubert, Eva Schubert, Mathias M. Pannier, Angela Kaye |
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Article |
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Kasputis, Tadas Pieper, Alex Rodenhausen, Keith Brian Rian Schmidt, Daniel R. Sekora, Derek G. Rice, Charles Schubert, Eva Schubert, Mathias M. Pannier, Angela Kaye |
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Kasputis, Tadas Pieper, Alex Rodenhausen, Keith Brian Rian Schmidt, Daniel R. Sekora, Derek G. Rice, Charles Schubert, Eva Schubert, Mathias M. Pannier, Angela Kaye Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion |
author_sort |
Kasputis, Tadas |
title |
Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion |
title_short |
Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion |
title_full |
Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion |
title_fullStr |
Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion |
title_full_unstemmed |
Use of precisely sculptured thin film (STF) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion |
title_sort |
use of precisely sculptured thin film (stf) substrates with generalized ellipsometry to determine spatial distribution of adsorbed fibronectin to nanostructured columnar topographies and effect on cell adhesion |
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Elsevier |
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2016 |
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http://scholarbank.nus.edu.sg/handle/10635/123197 |
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1781789747259113472 |