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Articles

Effect of asymmetry on the flow behavior in an idealized arterial bifurcation

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Pages 232-247 | Received 19 Jun 2019, Accepted 30 Dec 2019, Published online: 14 Jan 2020

References

  • ANSYS Academic Research Fluent. 2019. Release 19.2, help system, theory guide, ANSYS, Inc.,
  • Arjmandi-Tash O, Razavi SE. 2012. Numerical investigation of pulsatile blood flow in a bifurcation model with a non-planar branch: the effect of different bifurcation angles and non-planar branch. Bioimpacts. 2:195–205.
  • Barth TJ, Jespersen D. 1989. The design and application of upwind schemes on unstructured meshes. Technical Report AIAA-89-0366. AIAA 27th Aerospace Sciences Meeting, Reno, Nevada.
  • Bit A, Chattopadhyay H. 2014a. Assessment of rheological models for prediction of transport phenomena in stenosed artery. PCFD. 14(6):363–374.
  • Bit A, Chattopadhyay H. 2014b. Numerical investigations of pulsatile flow in stenosed artery. Acta Bioeng Biomech. 16(4):33–44.
  • Bit A, Ghagare D, Rizvanov AA, Chattopadhyay H. 2017. Assessment of influences of stenoses in right carotid artery on left carotid artery using wall stress marker. BioMed Res Int. 2017:1–13.
  • Bit A, Chattopadhay H. 2018. Acute aneurysm is more critical than acute stenoses in blood vessels: a numerical investigation using stress markers. BioNanoSci. 8(1):329–336.
  • Calderon AJ, Fowlkes JB, Bull JL. 2005. Bubble splitting in bifurcating tubes: a model study of cardiovascular gas emboli transport. J Appl Physiol. 99:479–487.
  • Calderon AJ, Eshpuniyani B, Fowlkes JB, Bull JL. 2010. A boundary element model of the transport of a semiinfinite bubble through a microvessel bifurcation. Phys Fluids. 22(6):061902.
  • Caro CG, Fritz-Gerald JM, Schroter RC. 1971. Atheroma and arterial wall shear: observation, correlation, and proposal of a shear dependent mass transfer mechanism for atherogenesis. Proc R Soc Lond (Biol). 117:109–159.
  • Chaichana T, Sun Z, Jewkes J. 2011. Computation of hemodynamics in the left coronary artery with variable angulations. J Biomech. 44(10):1869–1878.
  • Chandran KB, Yoganathan AP, Rittgers SE. 2007. Biofluid mechanics: the human circulation. Boca Raton (FL): Taylor & Francis publishing.
  • Chen J, Lu XY. 2006. Numerical investigation of the non-Newtonian pulsatile blood flow in a bifurcation model with a non-planar branch. J Biomech. 39(5):818–832.
  • Chen J, Lu XY. 2004. Numerical investigation of the non-Newtonian blood flow in a bifurcation model with a non-planar branch. J Biomech. 37(12):1899–1911.
  • Dean WR. 1928. The Stream-line Motion of Fluid in a Curved Pipe. Phil. Mag. 5.
  • Dean WR. 1927. Note on the Motion of Fluid in a Curved Pipe. Proc. Roy. Soc. A.
  • Evegren P, Fuchs L, Revstedt J. 2010. On the secondary flow through bifurcating pipes. Phys Fluids. 22:103601.
  • Gijsen FJ, van de Vosse FN, Janssen JD. 1999. The influence of the non-Newtonian properties of blood on the flow in large arteries: steady flow in a carotid bifurcation model. J Biomech. 32(6):601–608.
  • Guha A, Pradhan K. 2017. Secondary motion in three-dimensional branching networks. Phys Fluids. 29(6):063602.
  • Guha A, Pradhan K, Halder PK. 2017. Finding order in complexity: a study of the fluid dynamics in a three- dimensional branching network. Phys Fluids. 28:123602.
  • Ku DN. 1997. Blood flow in arteries. Annu Rev Fluid Mech. 29(1):399–434.
  • Ku DN, Giddens DP, Zarins CK, Glagov S. 1985. Pulsatile flow and atherosclerosis in the human carotid bifurcation. Positive correlation between plaque location and low oscillating shear stress. Arteriosclerosis. 5:293–302.
  • Lakshmanan HHS, Shatzel JJ, Olson SR, McCarrty OJT, Maddala J. 2019. Modeling the effect of blood vessel bifurcation ratio on occlusive thrombus formation. Comput Methods Biomech Biomed Eng. 22(11):972–980.
  • Lu Y, Lu X, Zhuang L, Wang W. 2002. Breaking symmetry in non-planar bifurcations: distribution of flow and wall shear stress. Biorheology. 39(3-4):431–436.
  • Malek AM, Alper SL, Izumo S. 1999. Hemodynamic shear stress and its role in atherosclerosis. J Am Med Assoc. 282(21):2035–2042.
  • Matsumoto D, Fukudome K, Wada H, Matsumoto D, Fukudome K, Wada H. 2016. Two-dimensional fluid dynamics in a sharply bent channel: Laminar flow, separation bubble, and vortex dynamics Two-dimensional fluid dynamics in a sharply bent channel: laminar flow, separation bubble, and vortex dynamics. Phys Fluids. 28(10):103602.
  • Murray CD. 1926. The physiological principle of minimum work applied to the angle of branching of arteries. J Gen Physiol. 9(6):835–841.
  • Nguyen KT, Clark CD, Chancellor TJ, Papavassiliou DV. 2008. Carotid geometry effects on blood flow and on risk for vascular disease. J Biomech. 41(1):11–19.
  • Noh S. M, Kang H.G. 2019. Clinical significance of the internal carotid artery angle in ischemic stroke. Sci Rep. 9:1–5.
  • Otero-Cacho A, Aymerich M, Flores-Arias MT, Abal M, Pérez-Muñuzuri V, Muñuzuri AP. 2018. Determination of hemodynamic risk for vascular disease in planar artery bifurcations. Sci Rep. 8:1–7.
  • Perktold K, Hilbert D. 1986. Numerical simulation of pulsatile flow in a carotid bifurcation model. J Biomed Eng. 8(3):193–199.
  • Perktold K, Resch M. 1990. Numerical flow studies in human carotid artery bifurcations: basic discussion of the geometric factor in atherogenesis. J Biomed Eng. 12(2):111–123.
  • Perktold K, Resch M, Peter RO. 1991. Three-dimensional numerical analysis of pulsatile flow and wall shear stress in the carotid artery bifurcation. J Biomech. 24(6):409–420.
  • Pinto SIS, Campos JBLM. 2016. Numerical study of wall shear stress-based descriptors in the human left coronary artery. Comput Methods Biomech Biomed Eng. 19(13):1443–1455.
  • Qamar A, Wong ZZ, Fowlkes JB, Bull JL. 2010. Dynamics of acoustic droplet vaporization in gas embolotherapy. Appl Phys Lett. 96(14):143702–143702-3.
  • Qamar A, Samtaney R, Bull JL. 2012. Pulsatility role incylinder flow dynamics at low Reynolds number. Phys Fluids. 24(8):081701.
  • Qamar A, Warnez M, Valassis DT, Guetzko M.E, Bull JL, Qamar A, Warnez M, Valassis DT, Guetzko ME. 2017. Small-bubble transport and splitting dynamics in a symmetric bifurcation. Comput Methods Biomech Biomed Eng. 20(11):1182–1194.
  • Rhie CM, Chow WL. 1983. Numerical study of the turbulent flow past an airfoil with trailing edge separation. AIAA J. 21(11):1525–1532.
  • Sinnott M, Cleary PW, Prakash M. 2006. An investigation of pulsatile blood flow in a bifurcation artery using a grid-free method. Proc. Fifth Int. Conf. CFD Process Ind, 1–6.
  • Valassis DT, Dodde RE, Esphuniyani B, Fowlkes JB, Bull JL. 2012. Microbubble transport through a bifurcating vessel network with pulsatile flow. Biomed Microdevices. 14(1):131–143.
  • Womersley JR. 1955. Method for the calculation of velocity, rate of flow and viscous drag in arteries when the pressure gradient is known. J Physiol. 127(3):553–563.
  • Wootton DM, Ku DN. 1999. Fluid mechanics of vascular systems, diseases, and thrombosis. Annu Rev Biomed Eng. 1(1):299–329.
  • Zarins C.K, Giddens D.P, Bharadvaj B.K, Sottiurai V.S, Mabon R.F, Glagov S. 1983. Carotid bifurcation atherosclerosis. Quantitative correlation of plaque localization with flow velocity profiles and wall shear stress. Circ Res. 53(4):502–514.
  • Zhang D, Dou K. 2015. Coronary bifurcation intervention: What role do bifurcation angles play? J Interv Cardiol. 28(3):236–248.
  • Zhang Y, Furusawa T, Sia S.F, Umezu M, Qian Y. 2013. Proposition of an out flow boundary approach for carotid artery stenosis CFD simulation. Comput Methods Biomech Biomed Eng. 16(5):488–494.

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