Method of numerical simulation of stable structures of fluid membranes and vesicles.
In this paper we study a methodology for the numerical simulation of stable structures of fluid membranes and vesicles in biological organisms. In particular, we discuss the effects of spontaneous curvature on vesicle cell membranes under the bending energy for given volume and surface area. The geo...
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2009
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ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-26462019-08-31T03:02:30Z Method of numerical simulation of stable structures of fluid membranes and vesicles. Ugail, Hassan Jamil, N. Satinoianu, R. Surface modeling Fluid membranes Vesicles Partial differential equations (PDEs) Spontaneous curvature Optimization Vesicle cell membranes In this paper we study a methodology for the numerical simulation of stable structures of fluid membranes and vesicles in biological organisms. In particular, we discuss the effects of spontaneous curvature on vesicle cell membranes under the bending energy for given volume and surface area. The geometric modeling of the vesicle shapes are undertaken by means of surfaces generated as Partial Differential Equations (PDEs). We combine PDE based geometric modeling with numerical optimization in order to study the stable shapes adopted by the vesicle membranes. Thus, through the PDE method we generate a generic template of a vesicle membrane which is then efficiently parameterized. The parameterization is taken as a basis to set up a numerical optimization procedure which enables us to predict a series of vesicle shapes subject to given surface area and volume. 2009-05-14T15:37:05Z 2009-05-14T15:37:05Z 2006 Article published version paper Ugail, H., Jamil, N. and Satinoianu, R. (2006). Method of numerical simulation of stable structures of fluid membranes and vesicles. WSEAS Transactions on Mathematics, Vol. 9, No. 5, pp. 1009-1014. http://hdl.handle.net/10454/2646 en http://www.worldses.org/journals/mathematics/index.html © 2006 World Scientific and Engineering Academy and Society (WSEAS). Reproduced in accordance with the publisher's self-archiving policy. World Scientific and Engineering Academy and Society (WSEAS) |
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language |
en |
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topic |
Surface modeling Fluid membranes Vesicles Partial differential equations (PDEs) Spontaneous curvature Optimization Vesicle cell membranes |
spellingShingle |
Surface modeling Fluid membranes Vesicles Partial differential equations (PDEs) Spontaneous curvature Optimization Vesicle cell membranes Ugail, Hassan Jamil, N. Satinoianu, R. Method of numerical simulation of stable structures of fluid membranes and vesicles. |
description |
In this paper we study a methodology for the numerical simulation of stable structures of fluid membranes and vesicles in biological organisms. In particular, we discuss the effects of spontaneous curvature on vesicle cell membranes under the bending energy for given volume and surface area. The geometric modeling of the vesicle shapes are undertaken by means of surfaces generated as Partial Differential Equations (PDEs). We combine PDE based geometric modeling with numerical optimization in order to study the stable shapes adopted by the vesicle membranes. Thus, through the PDE method we generate a generic template of a vesicle membrane which is then efficiently parameterized. The parameterization is taken as a basis to set up a numerical optimization procedure which enables us to predict a series of vesicle shapes subject to given surface area and volume. |
author |
Ugail, Hassan Jamil, N. Satinoianu, R. |
author_facet |
Ugail, Hassan Jamil, N. Satinoianu, R. |
author_sort |
Ugail, Hassan |
title |
Method of numerical simulation of stable structures of fluid membranes and vesicles. |
title_short |
Method of numerical simulation of stable structures of fluid membranes and vesicles. |
title_full |
Method of numerical simulation of stable structures of fluid membranes and vesicles. |
title_fullStr |
Method of numerical simulation of stable structures of fluid membranes and vesicles. |
title_full_unstemmed |
Method of numerical simulation of stable structures of fluid membranes and vesicles. |
title_sort |
method of numerical simulation of stable structures of fluid membranes and vesicles. |
publisher |
World Scientific and Engineering Academy and Society (WSEAS) |
publishDate |
2009 |
url |
http://hdl.handle.net/10454/2646 |
work_keys_str_mv |
AT ugailhassan methodofnumericalsimulationofstablestructuresoffluidmembranesandvesicles AT jamiln methodofnumericalsimulationofstablestructuresoffluidmembranesandvesicles AT satinoianur methodofnumericalsimulationofstablestructuresoffluidmembranesandvesicles |
_version_ |
1719239377056432128 |