[1] Nathan DM (2015) Long term complications of diabetes mellitus. N Engl J Med 328:1676-1685.
[2] Kennel WB, McGee DL )1979) Diabetes and cardiovascular disease: the framingham study. J. Am Med Assoc 241 : 2035-2038.
[3] Shikawa T, Guimaraes LFR, Oshima S, Yamane R (1998) Effect of non-newtonian property of blood on flow through a stenosed tube. Fluid Dyn Res 22:251-264.
[4] Nichols WW, O’Rourke MF (1998) McDonald’s blood flow in arteries:theoretical, experimental and clinical principles. 4th edn. Oxford University Press, London.
[5] Rutten MCM (1998) Fluid-solid interaction in large arteries. PhD thesis, Technische Universiteit Eindhoven.
[6] Biswas D, Laskar RB (2011) Steady flow of blood through a stenosed artery: a non- newtonian fluid mode. Phys Sci Technol 7:144-153.
[7] Chaichana T, Sun Z, Jewkes J (2013) Computation of hemodynamics in the left coronary artery with variable angulations. J. Biomech 44:1869-1878.
[8] Alishahi M, Alishahi MM, Emdad H (2011) Numerical simulation of blood flow in a flexible stenosed abdominal real aorta. Sci Iran 18(6):1297–1305.
[9] Toloui M, Firoozabadi B, Saidi MS (2012) A numerical study of the effects of blood rheology and vessel deformability on the hemodynamics of carotid bifurcation. Sci Iran 19(1):119–126.
[10] Jingliang D, Zhonghua S, Kiao I, Jiyuan Tu (2013) Fluid-structure interaction analysis of representative left coronary artery models with different angulations. Computing in Cardiology 40:5-8.
[11] Seo T (2013) Hemodynamic characteristics in the human carotid artery model induced by blood-arterial wall interactions. Int J Biol Biomed Eng 7(5):215-220.
[12] Ghenaat A, Ramiyar A, Ranjbar AA, Domiri Ganji D, Momeni M (2013) Numerical simulation of non-Newtonian blood flow in a vein with a bypass in the presence of a magnetic field.15th Fluid Dynamics Conference, Bandar Abbas, (In Persian).
[13] Abdul Khader SM, Ayachit A, Raghuvir Pai B, Ahmed KA, Rao VR K, Ganesh Kamath S (2014) FSI simulation of increased severity in patient specific common carotid artery stenosis. 3rd International Conference on Mechanical, Electronics and Mechatronics Engineering 14:19-20.
[14] Van Leeuwen-van Zaanea F, De Bruijnb HS, Van der Ploeg-van den Heuvela A, Sterenborga HJMC, Robinsonb DJ (2014) The effect of fluence rate on the acute response of vessel diameter and red blood cell velocity during topical 5-aminolevulinic acid photodynamic therapy. Photodiagn Photodyn Ther 11:71–81.
[15] Pielhop K, Klaas M, Schröder W (2015) Experimental analysis of the fluid–structure interaction in finite-length straight elastic vessels. Eur J Mech B Fluids 50:71–88.
[16] Nemati S, Ghassemi M, Shahidian A (2017) Numerical investigation of non-uniform magnetic field effects on the blood velocity and magnetic nanoparticles concentration inside the vessel. Journal of Mechanical Science and Technology 31(4):1657-1663.
[17] Botti L, Paliwal N, Counti P, Antiga L, Meng H (2018) Modeling hemodynamics in intracranial aneurysms: comparing accuracy of CFD solvers based on finite element and finite volume schemes. Int J Numer Methods Biomed Eng 34.
[18] Hassanzadeh A, Pourmahmoud N, Dadvand A (2019) Numerical simulation of red blood cell motion and deformation using improved lattice Boltzmann-immersed boundary method. Iranian J. Sci. Tech. Transactions of Mech. Eng 43:57-73.
[19] Qiao Y, Zeng Y, Ding Y, Fan J, Luo K, Zhu T (2019) Numerical simulation of two-phase non-newtonian blood flow with fluid-structure interaction in aortic dissection. Comput Methodes Biomech Biomed Engin 22(6):620-630.
[20] Vasconcellos GLF, de Oliveira A, Queiroz MD, Júnior JL, Maia CB (2020) Flow past a circular cylinder: a comparison between commercial finite volume and finite element codes. Adv Sci Eng Med 12:815–824.
[21] Ito Y, Cho I, Sakai Y, Iwano K (2021) CFD study on the efficacy of flow diverter stent placement for cerebral aneurysms. J Appl Fluid Mech 14(5):1547-1558.
[22] Collyer AA (1993) Techniques in rheological measurements. 1st edn. Springer, Sheffield.
[23] Macosko CW (1996) Rheology: Principles Measurements and Applications.1st edn. VCH Munich,.
[24] Hoseinieh farahani M (2008) Numerical Analysis of Unsteady Blood Flow in Arteies with Flexible wall Using SPH Method. PhD thesis, University of Guilan, (In Persian).
[25] Yousefi ghaleroudkhani M (2012) Numerical Analysis of Unsteady Blood Flow in Arteies with Flexible wall Using FPM Method. PhD thesis, University of Guilan, (In Persian).