Comparison of four different FIM configurations-a simulation study
Focused impedance measurements (FIM) are used in several fields, and address the problem of measuring the volume impedance of an object within a volume conductor. Several electrode configurations are possible, and these have different properties. Sensitivity fields of four configurations have been i...
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Published in | Physiological measurement Vol. 35; no. 6; pp. 1067 - 1082 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
England
IOP Publishing
01.06.2014
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Subjects | |
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Abstract | Focused impedance measurements (FIM) are used in several fields, and address the problem of measuring the volume impedance of an object within a volume conductor. Several electrode configurations are possible, and these have different properties. Sensitivity fields of four configurations have been investigated. We present one new development of an existing FIM configuration, and we made finite element models of the configurations to analyse and compare them both graphically and numerically. The models developed have a variable-sized mesh that allows us to build complex models that fit easily in computer memory. We found that one configuration in particular, FIM4, was superior to the others in most aspects. We also analysed the effects of very high sensitivities in and under the electrodes. We found that even if the sensitivity is very high under the electrodes, the effects of inhomogeneities were not as high as one might expect. |
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AbstractList | Focused impedance measurements (FIM) are used in several fields, and address the problem of measuring the volume impedance of an object within a volume conductor. Several electrode configurations are possible, and these have different properties. Sensitivity fields of four configurations have been investigated. We present one new development of an existing FIM configuration, and we made finite element models of the configurations to analyse and compare them both graphically and numerically. The models developed have a variable-sized mesh that allows us to build complex models that fit easily in computer memory. We found that one configuration in particular, FIM4, was superior to the others in most aspects. We also analysed the effects of very high sensitivities in and under the electrodes. We found that even if the sensitivity is very high under the electrodes, the effects of inhomogeneities were not as high as one might expect. |
Author | Ferdous, H Pettersen, F J Kalvøy, H Martinsen, Ø G Høgetveit, J O |
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Cites_doi | 10.3329/bjmp.v4i1.14689 10.1088/0031-9155/38/6/005 10.5617/jeb.173 10.1088/1742-6596/434/1/012009 10.1088/0022-3727/40/1/S02 10.1109/TBME.1971.4502787 10.1088/1742-6596/224/1/012031 10.1049/el:20001439 10.5617/jeb.778 10.1088/0967-3334/31/8/S08 10.1007/s10439-008-9470-7 10.1111/j.1749-6632.1999.tb09490.x |
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References | Gabriel C (5) 1996 Abir R (1) 2013; 434 13 14 Pettersen F-J (12) 2011; 2 Russel W M S (16) 1959 Nopp P (11) 1993; 38 Kadir M A (10) 2010; 224 Humphries S J (8) 1997 2 Ferdous H F (4) 2013; 4 6 Grimnes S (7) 2007; 40 Islam N (9) 2010; 31 Rabbani K S-E (15) 2011; 4 COMSOL (3) 2013 |
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SubjectTerms | Computer Simulation Dielectric Spectroscopy Electrodes finite element model focused impedance measurement Numerical Analysis, Computer-Assisted simulation three Rs |
Title | Comparison of four different FIM configurations-a simulation study |
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