RUS  ENG
Full version
JOURNALS // Izvestiya of Saratov University. Mathematics. Mechanics. Informatics

Izv. Saratov Univ. Math. Mech. Inform., 2013, Volume 13, Issue 3, Pages 76–82 (Mi isu429)

Biomechanics of human carotid artery with pathological tortuosity
L. Yu. Kossovich, Ê. Ì. Ìîrozov, O. E. Pavlova

References

1. Morbidity rate of adult population of Russia in 2011, Pt. 3, Moscow, 2012, 525 pp.
2. Demographical Annual of Russia, Available at: http://www.gks.ru/bgd/regl/B12_16/Main.htm, 2012, (Accessed 01, July, 2013)
3. Spiridonov A. A., Lavrent'ev A. V., Morozov K. M., Pirtskhalaishvili Z. K., Microsurgical revasculization of carotid system, Moscow, 2000, 266 pp.
4. Prencipe G., Pellegrino L., Vairo F., Tomaiuolo M., Furio O. A., “Dolichoarteriopathy (kinking, coiling, tortuosity) of the carotid arteries and cardiovascular risk factors”, Minerva Cardioangiol., 46:1–2 (1998), 1–7
5. Pavlova O. E., Ivanov D. V., Gramakova A. A., Morozov K. M., Suslov I. I., “Hemodynamics and Mechanical Behavior of Pathologically Tortuous Carotid Arteries”, Izv. Sarat. Univ. N.S. Ser. Math. Mech. Inform., 10:2 (2010), 66–73  mathnet
6. Pavlova O. E., Ivanov D. V., Kirillova I. V., “Computational Investigation of Pathological Tortuosity Influence on artery bloodflow”, Ansys Advantage. Russian Edition, 2012, no. 18, 47–48
7. Pavlova O. E., “Surgical Treatment of Carotid Arteries with Tortuosity”, Matematicheskoe modelirovanie i biomekhanika v sovremennom universitete, Tezisy dokladov VII Vserossiiskoi shkoly-seminara, Rostov-on-Don, 2012, 98
8. Golyadkina A. A., Kirillova I. V., Schuchkina O. A., Maslyakova G. N., Ostrovskiy N. V., Chelnokova N. O., “The Finite Element Modelling of Ischemic Heart Disease Based on the Morphological and Functional Changes of Human Coronary Arteries and Myocardium”, Russian Journal of Biomechanics, 15:4 (2011), 33–46  elib
9. Golyadkina A. A., Kirillova I. V., Schuchkina O. A., “Investigation of Human Coronary Arteries and Heart Ventricles Mode of Deformation and Haemodynamics”, Vestnik SamGTU. Ser. Fiz.-Math. Nauk, 2011, no. 3(24), 79–88  mathnet  crossref  rsci
10. Golyadkina A. A., Kirillova I. V., “Numerical Modeling of Stress-streain State of Normal and Pathological Human Ventricle Walls”, Vestnik of Lobachevsky State University of Nizhni Novgorod, 4:2 (2011), 415–417
11. Kamenskiy A. V., Mathematical modeling of carotid bifurcation behaviour at different stages of atherosclerosis and after surgical treatment, Cand. phys. and math. sci. diss., Saratov, 2007, 170 pp.
12. Wu Wei, Qi Min, Liu Xiao-Peng Yang, Da-Zhi, Wang Wei-Qiang, “Delivery and release of nitinol stent in carotid artery and their interactions: A finite element analysis”, J. Biomech., 40 (2007), 3034–3040  crossref  isi
13. Kural M. H., Cai M., Tang D., Gwyther T., Zheng J., Billiar K. L., “Planar biaxial characterization of diseased human coronary and carotid arteries for computational modeling”, J. Biomech., 45 (2012), 790–798  crossref  isi


© Steklov Math. Inst. of RAS, 2026