Finite element analysis of problems of bioimpedance diagnosis
Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 52 (2012) no. 4, pp. 733-745 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

@article{ZVMMF_2012_52_4_a11,
     author = {Yu. V. Vassilevski and A. A. Danilov and D. Nikolaev and S. G. Rudnev and V. U. Salamatova and A. V. Smirnov},
     title = {Finite element analysis of problems of bioimpedance diagnosis},
     journal = {\v{Z}urnal vy\v{c}islitelʹnoj matematiki i matemati\v{c}eskoj fiziki},
     pages = {733--745},
     year = {2012},
     volume = {52},
     number = {4},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/ZVMMF_2012_52_4_a11/}
}
TY  - JOUR
AU  - Yu. V. Vassilevski
AU  - A. A. Danilov
AU  - D. Nikolaev
AU  - S. G. Rudnev
AU  - V. U. Salamatova
AU  - A. V. Smirnov
TI  - Finite element analysis of problems of bioimpedance diagnosis
JO  - Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki
PY  - 2012
SP  - 733
EP  - 745
VL  - 52
IS  - 4
UR  - http://geodesic.mathdoc.fr/item/ZVMMF_2012_52_4_a11/
LA  - ru
ID  - ZVMMF_2012_52_4_a11
ER  - 
%0 Journal Article
%A Yu. V. Vassilevski
%A A. A. Danilov
%A D. Nikolaev
%A S. G. Rudnev
%A V. U. Salamatova
%A A. V. Smirnov
%T Finite element analysis of problems of bioimpedance diagnosis
%J Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki
%D 2012
%P 733-745
%V 52
%N 4
%U http://geodesic.mathdoc.fr/item/ZVMMF_2012_52_4_a11/
%G ru
%F ZVMMF_2012_52_4_a11
Yu. V. Vassilevski; A. A. Danilov; D. Nikolaev; S. G. Rudnev; V. U. Salamatova; A. V. Smirnov. Finite element analysis of problems of bioimpedance diagnosis. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 52 (2012) no. 4, pp. 733-745. http://geodesic.mathdoc.fr/item/ZVMMF_2012_52_4_a11/

[1] Grimnes S., Martinsen O. G., Bioimpedance and bioelectricity basics, Elsevier, Amsterdam, 2008

[2] Nikolaev D. V., Smirnov A. V., Bobrinskaya I. G., Rudnev S. G., Bioimpedansnyi analiz sostava tela cheloveka, Nauka, M., 2009

[3] Geselowitz D. B., “An application of electrocardiographic lead theory to impedance plethysmography”, IEEE Trans. Biomed. Eng., 18:1 (1971), 38–41 | DOI

[4] Schwan H. P., “Electrical properties of tissue and cell suspension”, Advances in Biological and Medical Physics, eds. J. H. Lawrence, C. A. Tobias, Acad. Press, 1957, 147–209

[5] Yang F., Patterson R. P., “A simulation study on the effect of thoracic conductivity inhomogeneities on sensitivity distributions”, Ann. Biomed. Eng., 36:5 (2008), 762–768 | DOI

[6] Yang F., Patterson R. P., “The contribution of the lungs to thoracic impedance measurements: a simulation study based on a high resolution finite difference model”, Physiol. Meas., 28:7 (2007), 153–161 | DOI

[7] Kauppinen P. K., Hyttinen J. A., Malmivuo J. A., “Sensitivity distributions of impedance cardiography using band and spot electrodes analyzed by a three-dimensional computer model”, Ann. Biomed. Eng., 26:4 (1998), 694–702 | DOI

[8] Sachse F. B., Werner C. D., Meyer-Waarden K., Dossel O., “Development of a human body model for numerical calculation of electrical fields”, Comput. Med. Imaging Graph., 24:3 (2000), 165–171 | DOI

[9] Scharfetter K., Brunner P., Mayer M. et al., “Fat and hydration monitoring by abdominal bioimpedance analysis: data interpretation by hierarchical electrical modeling”, IEEE Transact. on Biomedical Engng., 52:6 (2005), 975–982 | DOI

[10] Mozhaev V. A., “Sensitivity analysis of polysegmental BIA parameters for estimation of body composition and systemic hydrohemodynamics”, 13th Internat. Conf. on Electrical Bioimpedance and the 8th Conf. on Electrical Impedance Tomography, IFMBE Proceedings, 17, no. 3, 2007, 44–47 | DOI

[11] Tsvetkov A. A., Bioimpedansnye metody kontrolya sistemnoi gemodinamiki, Slovo, M., 2010

[12] Gabriel S., Lau R. W., Gabriel C., “The dielectric properties of biological tissue. III: Parametric models for the dielectric spectrum of tissues”, Phys. Med. Biol., 41:11 (1996), 2271–2293 | DOI

[13] Danilov A. A., “Sposoby postroeniya trekhmernykh poverkhnostnykh triangulyatsii i tetraedralnykh setok”, Nauchno-tekhn. vestnik SPbGU ITMO, 65:1 (2010), 87–92

[14] Danilov A. A., “Unstructured tetrahedral mesh generation technology”, Zh. vychisl. matem. i matem. fiz., 50:1 (2010), 146–163 | MR | Zbl

[15] Vasilevskii Yu. V., Lipnikov K. N., “Ispolzovanie metodiki vosstanovleniya gessiana pri postroenii adaptivnykh setok”, Voprosy atomnoi nauki i tekhn., 2006, no. 3, 37–53

[16] Lipnikov K., Vassilevski Yu., “Parallel adaptive solution of 3D boundary value problems by Hessian recovery”, Comput. Methods Appl. Mech. Engnr., 192:11–12 (2003), 1495–1513 | DOI | MR | Zbl

[17] Saad Y., “ILUT: a dual threshold incomplete LU factorization”, Numer. Linear Algebra Appl., 1:4 (1994), 387–402 | DOI | MR | Zbl

[18] Kaporin I. E., “High quality preconditioning of a general symmetric positive definite matrix based on its $u^tu+u^tr+r^tu$-decomposition”, Numer. Linear Algebra Appl., 5:6 (1998), 483–509 | 3.0.CO;2-7 class='badge bg-secondary rounded-pill ref-badge extid-badge'>DOI | MR | Zbl

[19] Orkvasov M. Yu., Ivanov G. G., Yan-Borisova E. Yu. i dr., “Metodika i programma monitornogo kontrolya gidratatsii legkikh”, Diagnostika i lechenie narushenii regulyatsii serdechno-sosudistoi sistemy, Materialy 13-i nauchno-prakticheskoi konferentsii, Glavnyi klinicheskii gospital MVD Rossii, M., 2011, 195–201

[20] Wu Z., Sullivan J. M., “Multiple material marching cubes algorithm”, Internat. J. Numer. Meth. Eng., 58:2 (2003), 189–207 | DOI | Zbl

[21] Gueziec A., Hummel R., “Exploiting triangulated surface extraction using tetrahedral decomposition”, IEEE Transactions on visualization and computer graphics, 1:4 (1995), 328–342 | DOI

[22] Reitinger V., Bornik A., Beichel R., “Constructing smooth non-manifold meshes of multi-labeled volumetric datasets”, WSCG'2005 Full Papers Conference Proceedings, Univ. of West Bohemia, Plzen, 2005, 227–234

[23] Müller H., “Boundary extraction for rasterized motion planning”, Modelling and Planning for Sensor Based Intelligent Robot Systems, World Scientific, 1995, 41–50 | DOI

[24] Schroeder W., Martin K., Lorensen B., The visualization toolkit: an object-oriented approach to 3D graphics, Prentice Hall, Upper Saddle River, NJ, 1998

[25] Taubin G., “A signal processing approach to fair surface design”, Proc. of the 22nd Annual Conf. on Comput. Graphics and Interactive Techn., ACM Press, New York, 1995, 351–358

[26] Wang D., Hassan O., Morgan K., Weatherill N. P., “Enhanced remeshing from STL files with applications to surface grid generation”, Communic. in Numer. Meth. Engng., 23:3 (2007), 227–239 | DOI | MR | Zbl

[27] Höhne K. H., Pflesser V., Pommert A. et al., “A realistic model of human structure from the Visible Human data”, Meth. Inform. Med., 40:2 (2001), 83–89

[28] Vasilevskii Yu. V., Vershinin A. V., Danilov A. A., Plenkin A. V., “Tekhnologiya postroeniya tetraedralnykh setok dlya oblastei, zadannykh v SAPR”, Matrichnye metody i tekhnologii resheniya bolshikh zadach, ed. E. E. Tyrtyshnikov, IVM RAN, M., 2005, 21–32