Реализация численных моделей тела человека

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519.6
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ИИИИИИИИИИИИИИ . .
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2010 . № 14.740.11.0844
«2010-1.1-400-150-053»
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:
1.
Danilov A.A., Nikolaev D.V., Rudnev S.G., Salamatova V.Yu., Vassilevski Yu.V. Modelling
of bioimpedance measurements: unstructured mesh application to real human anatomy //
Russ. J. Numer. Anal. Math. Modelling, Vol. 27, No. 5. P.431-440.
.
. .,
1.
. .,
.−
2.
я И. .,
. .
, 2009. − 392 .
.:
Grimmes S. and Martinsen O.G. BТШТЦpОНКЧМО КЧН BТШОХОМЭЫТМТЭв BКЬТМЬ. − Amsterdam:
Elsevier, 2008. − 471 p.
. .,
3.
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//
-
– 2012, – .52, №4, – .733–745.
4.
Danilov A.A., Nikolaev D.V., Rudnev S.G., Salamatova V.Yu., Vassilevski Yu.V. Modelling of
bioimpedance measurements: unstructured mesh application to real human anatomy // Russ. J.
Numer. Anal. Math. Modelling, Vol. 27, No. 5. P.431-440.
5.
Visible
Human
Project
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http://www.nlm.nih.gov/research/visible/visible_human.html,
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//
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13$
“
”.
7.
.:
.
-
, 2011. . 195–201.
Lipnikov K., Vassilevski Yu. Parallel adaptive solution of 3D boundary value problems by
Hessian recovery // Comp. Methods Appl. Mech. Engnr. – 2003. – Vol. 192. – № 11–12. –
Pp. 1495–1513.
8.
Kaporin I.E. High quality preconditioning of a general symmetric positive definite matrix
based on its utu + utr + r tu – decomposition // Numer. Linear Algebra Appl. – 1998. –
Vol. 5. – № 6. – Pp. 483–509.
9.
Geselowitz D.B. An application of electrocardiographic lead theory to impedance
plethysmography // IEEE Trans. Biomed. Eng. – 1971. – V.18, №1. – P.38-41.
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