Mathematical model and software for monitoring of cardiovascular system
Problemy fiziki, matematiki i tehniki, no. 3 (2011), pp. 104-112.

Voir la notice de l'article provenant de la source Math-Net.Ru

The facilities of primary diagnostics of the heart and vascular system based on hydrodynamic model of the blood flow and realized in software BIODIS V2.2 have been demonstrated.
Keywords: cardiovascular system, hemodynamics, pressure, adaptivity, primary diagnosis, computer modeling, software.
@article{PFMT_2011_3_a18,
     author = {S. V. Shilko and Yu. G. Kuzminsky and M. V. Borisenko},
     title = {Mathematical model and software for monitoring of cardiovascular system},
     journal = {Problemy fiziki, matematiki i tehniki},
     pages = {104--112},
     publisher = {mathdoc},
     number = {3},
     year = {2011},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/PFMT_2011_3_a18/}
}
TY  - JOUR
AU  - S. V. Shilko
AU  - Yu. G. Kuzminsky
AU  - M. V. Borisenko
TI  - Mathematical model and software for monitoring of cardiovascular system
JO  - Problemy fiziki, matematiki i tehniki
PY  - 2011
SP  - 104
EP  - 112
IS  - 3
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/PFMT_2011_3_a18/
LA  - ru
ID  - PFMT_2011_3_a18
ER  - 
%0 Journal Article
%A S. V. Shilko
%A Yu. G. Kuzminsky
%A M. V. Borisenko
%T Mathematical model and software for monitoring of cardiovascular system
%J Problemy fiziki, matematiki i tehniki
%D 2011
%P 104-112
%N 3
%I mathdoc
%U http://geodesic.mathdoc.fr/item/PFMT_2011_3_a18/
%G ru
%F PFMT_2011_3_a18
S. V. Shilko; Yu. G. Kuzminsky; M. V. Borisenko. Mathematical model and software for monitoring of cardiovascular system. Problemy fiziki, matematiki i tehniki, no. 3 (2011), pp. 104-112. http://geodesic.mathdoc.fr/item/PFMT_2011_3_a18/

[1] E. V. Astrakhantseva, V. Yu. Gidasnov, D. L. Reviznikov, “Matematicheskoe modelirovanie gemodinamiki krupnykh krovenosnykh sosudov”, Matematicheskoe modelirovanie, 17:8 (2005), 61–80 | Zbl

[2] M. V. Abakumov i dr., Matematicheskaya model gemodinamiki serdechno sosudistoi sistemy, Preprint No 104, IPM RAN, M., 1996, 25 pp.

[3] V. A. Lischuk, Matematicheskaya teoriya krovoobrascheniya, Meditsina, M., 1991, 256 pp.

[4] Fokin V. A., “Sistemnyi podkhod k integralnoi otsenke sostoyaniya biosistem”, Sovremennye metody predstavleniya i obrabotki biomeditsinskoi informatsii, eds. Yu. V. Kistenev, Ya. S. Pekker, Izd-vo TPU, Tomsk, 2004, 51–123

[5] S. S. Simakov, Chislennoe modelirovanie serdechno-sosudistoi i dykhatelnoi sistem organizma cheloveka s uchetom ikh vzaimodeistviya, Dis. ... kand. tekhn. nauk: 05.13.18, MFTI, M., 2006, 115 pp.

[6] V. B. Koshelev i dr., “Matematicheskoe modelirovanie gemodinamiki serdechno-sosudistoi sistemy s uchetom vliyaniya neiroregulyatsii”, Matematicheskoe modelirovanie, 19:3 (2007), 15–28 | Zbl

[7] V. I. Dubrovskii, V. N. Fedorova, Biomekhanika, Meditsina, M., 2003, 669 pp.

[8] K. Karo i dr., Mekhanika krovoobrascheniya, Mir, M., 1981, 624 pp. | Zbl

[9] A. Agrawal, A. A. Ghatol, V. P. Agrawal, “Structural Modeling and Analysis of Cardiovascular Systems (CVS): Graph-Theoretic Approach”, The IUP Journal of Computer Sciences, 2008, 241–266

[10] M. Beasley et al., “Analysis of Pressure Losses in the Hemodialysis Graft Vascular Circuit Using Finite Element Analysis”, Excerpt from the Proc. of the COMSOL Users Conf. (Boston, 2006), 185–191

[11] T. Gadcari, A. Jeremic, “Mathematical modeling of blood flow in the presence of atherosclerosis”, Excerpt from the Proc. of the COMSOL Users Conf. (Boston, 2006), 879–886

[12] S. V. Shilko, Yu. G. Kuzminskii, “Modelirovanie gidrodinamicheskogo treniya: analogiya sistemy krovoobrascheniya i truboprovodnogo transporta nefti”, Mater. 2 mezhdun. konf. Sovr. inform. i telekomun. tekhnol. dlya zdravookhr. (Minsk, 2008), 338–343

[13] Yu. G. Kuzminskii i dr., “Metodika i kompyuternaya sistema diagnostiki sostoyaniya serdechno-sosudistoi sistemy”, Problemy zdorovya i ekologii, GoGMU, 2009, no. 2, 90–96

[14] S. V. Shilko i dr., “Vozmozhnosti pervichnoi diagnostiki serdechno-sosudistoi sistemy na osnove biomekhanicheskogo analiza gemodinamiki”, Problemy zdorovya i ekologii, GoGMU, 2010, no. 3, 148–155

[15] B. B. Sramek, Hemodynamics and its role in oxygen transport. Biomechanics of the Cardiovascular System, Czech Technical University Press, 1995, 209–231

[16] Yu. E. Pitkevich, “Variabelnost serdechnogo ritma u sportsmenov”, Problemy zdorovya i ekologii, GoGMU, 2010, no. 4, 101–106