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Preface

  • A. Sequeira (a1) and V. Volpert (a2)

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[1] Panteleev, M.A., Sveshnikova, A.N., Belyaev, A.V., Nechipurenko, D.Y., Gudich, I., Obydenny, S.I., Dovlatova, N., Fox, S.C., Holmuhamedov, E.L.. Systems biology and systems pharmacology of thrombosis. Math. Model. Nat. Phenom., 9 (2014), no. 6, 416.
[2] Naidu, P.P., Anand, M.. Importance of VIIIa inactivation in a mathematical model for the formation, growth, and lysis of clots. Math. Model. Nat. Phenom., 9 (2014), no. 6, 1733.
[3] Sequeira, A., Bodnar, T.. Blood coagulation simulations using a viscoelastic model. Math. Model. Nat. Phenom., 9 (2014), no. 6, 3445.
[4] Boujena, S., Kafi, O., El Khatib, N.. A 2D mathematical model of blood flow and its interactions in an atherosclerotic artery. Math. Model. Nat. Phenom., 9 (2014), no. 6, 4668.
[5] Bessonov, N., Babushkina, E., Golovashchenko, S.F., Tosenberger, A., Ataullakhanov, F., Panteleev, M., Tokarev, A., Volpert, V.. Numerical modelling of cell distribution in blood flow. Math. Model. Nat. Phenom., 9 (2014), no. 6, 6984.
[6] Gamilov, T., Ivanov, Yu., Kopylov, P., Simakov, S., Vassilevski, Yu.. Patient specific haemodynamic modeling after occlusion treatment in leg. Math. Model. Nat. Phenom., 9 (2014), no. 6, 8597.
[7] Tiago, J., Gambaruto, A., Sequeira, A.. Patient-specific blood flow simulations: setting Dirichlet boundary conditions for minimal error with respect to measured data. Math. Model. Nat. Phenom., 9 (2014), no. 6, 98116.
[8] Bodnár, T., Pires, M., Janela, J.. Blood flow simulation using traceless variant of Johnson-Segalman viscoelastic model. Math. Model. Nat. Phenom., 9 (2014), no. 6, 117141.

Preface

  • A. Sequeira (a1) and V. Volpert (a2)

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