DocumentCode :
1556306
Title :
A Discrete Geometric Approach to Cell Membrane and Electrode Contact Impedance Modeling
Author :
Affanni, Antonio ; Specogna, Ruben ; Trevisan, Francesco
Author_Institution :
Dipartimento di Ingegneria Elettrica, Gestionale e Meccanica, Universita di Udine, Udine, Italy
Volume :
59
Issue :
9
fYear :
2012
Firstpage :
2619
Lastpage :
2627
Abstract :
This paper presents a novel discrete model for cell membranes and electrodes contact impedances alternative to the widely used finite elements. The finite element approach can be considered as a tool for constructing finite dimensional systems of equations that approximate the specific electroquasistatic biological problem on the discrete level. Although the finite element technique is explained typically in terms of variational or weighted-residual approaches, another, less familiar way is available to reformulate geometrically the same physical problem. This approach, referred to as discrete geometric approach, allows a direct link between geometry and the degrees of freedom describing the specific biological problem. It is straightforward to implement in any finite element open software and it assures a correct modeling of voltages and currents playing a fundamental role in a biological problem. The validation has been performed, as a first step, against analytical solutions; then, we considered impedance measurements regarding erythrocytes in whole blood flowing in microchannels at high shear rates.
Keywords :
Biomembranes; Boundary conditions; Conductivity; Electric potential; Electrodes; Equations; Impedance; Cell membrane modeling; complete electrical impedance tomography (EIT) model; contact impedance modeling; discrete geometric approach (DGA); thin layers; Cell Membrane; Electric Impedance; Electrodes; Erythrocytes; Finite Element Analysis; Hemorheology; Humans; Microfluidic Analytical Techniques; Models, Biological; Reproducibility of Results; Tomography;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2012.2207897
Filename :
6237518
Link To Document :
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