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ЖУРНАЛЫ // Вестник Санкт-Петербургского университета. Серия 10. Прикладная математика. Информатика. Процессы управления

Вестн. С.-Петербург. ун-та. Сер. 10. Прикл. матем. Информ. Проц. упр., 2018, том 14, выпуск 2, страницы 158–164 (Mi vspui366)

Mathematical modelling of pulsative blood flow in deformable arteries
V. P. Tregubov, S. V. Rutkina

Литература

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5. Baskurt O. K., Meiselman H. J., “Blood rheology and haemodynamics”, Seminars in thrombosis and hemostasis, 29:5 (2003), 435–450  crossref
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7. Cho Y. I., Kensey K. R., “Effects of the non-Newtonian viscosity of blood on flows in a diseased arterial vessel. Pt. 1. Steady Flows”, Biorheology, 28 (1991), 241–262  crossref
8. Tokuda Y., Song M. H., Ueda Y., Usui A., Akita T., Yoneyama S., Maruyama S., “Three-dimensional numerical simulation of blood flow in the aortic arch during cardiopulmonary bypass”, Europ. J. Cardiothoracic Surgery, 33 (2008), 164–167  crossref
9. Numata S., Itatani K., Kanda K., Doi K., Yamazaki S., Morimoto K., Manabe K., Ikemoto K., Yaku H., “Blood flow analysis of the aortic arch using computational fluid dynamics”, Europ. J. Cardio-Thoracic Surgery, 49:6 (2016), 1–8  crossref
10. Tregubov V. P., “Mathematical modelling of the non-Newtonian blood flow in the aortic arc”, Computer Research and Modeling, 9:2 (2017), 259–269  crossref
11. Tregubov V., Mukhtarova D., “A model study of blood flow in branching vessels”, Vestnik of Saint Petersburg University. Series 10. Applied Mathematics. Computer Science. Control Processes, 13:1 (2017), 42–50  mathnet  mathscinet
12. Duta A., Tarbell J. M., “Influence of non-Newtonian behavior of blood on flow in elastic artery mofel”, J. Biomech. Eng., 118 (1996), 111–119  crossref


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