DocumentCode
2210808
Title
Finite element simulation of the frequency-dependent polarization of biological cells
Author
Bohmelt, Sebastian ; Scharf, Fabian ; Dudzinski, Michael ; Rozgic, Marco ; Fichte, Lars-Ole ; Stiemer, Marcus
Author_Institution
Helmut-Schmidt-University, University of the German Armed Forces, Holstenhofweg 85, 22043 Hamburg, Germany
fYear
2015
fDate
16-22 Aug. 2015
Firstpage
535
Lastpage
540
Abstract
The impact of electromagnetic fields on biological tissue is increasingly gaining relevance for electromagnetic compatibility considerations. To estimate such effects, the determination of the electromagnetic exposition on the cellular level is essential. Hence, a new method for the finite element simulation of biological cells in electrolyte solution based on the electro-quasistatic approximation to Maxwell´s equations is presented here. By non-overlapping iterative domain decomposition (IDD), a more efficient and accurate incorporation of surface charge relaxation on material interfaces is achieved than by former methods. IDD does not only lead to an efficient consideration of the interface coupling of electrical flux- and current densities, but also overcomes numerical problems related to size differences of individual cell components. A completely parallel treatment of the resulting subdomains will enable the simulation of large cell systems in the future. The approach is validated in the case of a time-harmonic external field. Further, numerical errors and convergence properties are analyzed.
Keywords
Biological cells; Biomembranes; Computational modeling; Convergence; Finite element analysis; Mathematical model; Permittivity;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetic Compatibility (EMC), 2015 IEEE International Symposium on
Conference_Location
Dresden, Germany
Print_ISBN
978-1-4799-6615-8
Type
conf
DOI
10.1109/ISEMC.2015.7256219
Filename
7256219
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