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Original Articles

Computational Modeling of Macromolecule Transport in the Arterial Wall

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Pages 491-504 | Received 01 Aug 2000, Accepted 12 Jan 2001, Published online: 25 Apr 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Satyajit Choudhury, Kameswararao Anupindi & B. S. V. Patnaik. (2021) A study on the transport and interaction between blood flow and low-density-lipoprotein in near-wall regions of blood vessels. Computer Methods in Biomechanics and Biomedical Engineering 24:13, pages 1473-1487.
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Marcello Iasiello, Kambiz Vafai, Assunta Andreozzi & Nicola Bianco. (2018) Boundary layer considerations in a multi-layer model for LDL accumulation. Computer Methods in Biomechanics and Biomedical Engineering 21:15, pages 803-811.
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D.R. Hose, A.J. Narracott, B. Griffiths, S. Mahmood, J. Gunn, D. Sweeney & P.V. Lawford. (2004) A Thermal Analogy for Modelling Drug Elution from Cardiovascular Stents. Computer Methods in Biomechanics and Biomedical Engineering 7:5, pages 257-264.
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Satyajit Choudhury, Kameswararao Anupindi & B. S. V. Patnaik. (2019) Influence of wall shear stress and geometry on the lumen surface concentration of low density lipoprotein in a model abdominal aortic aneurysm. Physics of Fluids 31:1.
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Stephen Chung & Kambiz Vafai. (2014) Mechanobiology of low-density lipoprotein transport within an arterial wall—Impact of hyperthermia and coupling effects. Journal of Biomechanics 47:1, pages 137-147.
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Xiao Liu, Yubo Fan & Xiaoyan Deng. (2011) Mechanotransduction of Flow-Induced Shear Stress by Endothelial Glycocalyx Fibers is Torque Determined. ASAIO Journal 57:6, pages 487-494.
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Xiao Liu, Yubo Fan & Xiaoyan Deng. (2011) Effect of the endothelial glycocalyx layer on arterial LDL transport under normal and high pressure. Journal of Theoretical Biology 283:1, pages 71-81.
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X. Y. Xu, N. Sun, D. Liu & N. B. Wood. 2012. Patient-Specific Modeling in Tomorrow's Medicine. Patient-Specific Modeling in Tomorrow's Medicine 189 215 .
P.E. Vincent, S.J. Sherwin & P.D. Weinberg. (2010) The effect of the endothelial glycocalyx layer on concentration polarisation of low density lipoprotein in arteries. Journal of Theoretical Biology 265:1, pages 1-17.
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Peter E. Vincent, Spencer J. Sherwin & Peter D. Weinberg. (2009) The Effect of a Spatially Heterogeneous Transmural Water Flux on Concentration Polarization of Low Density Lipoprotein in Arteries. Biophysical Journal 96:8, pages 3102-3115.
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Nanfeng Sun, Ryo Torii, Nigel B. Wood, Alun D. Hughes, Simon A. M. Thom & X. Yun Xu. (2009) Computational Modeling of LDL and Albumin Transport in an In Vivo CT Image-Based Human Right Coronary Artery. Journal of Biomechanical Engineering 131:2.
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Ufuk Olgac, Vartan Kurtcuoglu & Dimos Poulikakos. (2008) Computational modeling of coupled blood-wall mass transport of LDL: effects of local wall shear stress. American Journal of Physiology-Heart and Circulatory Physiology 294:2, pages H909-H919.
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Ning Yang & Kambiz Vafai. (2008) Low-density lipoprotein (LDL) transport in an artery ? A simplified analytical solution. International Journal of Heat and Mass Transfer 51:3-4, pages 497-505.
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K. Khanafer & K. Vafai. 2008. Emerging Topics in Heat and Mass Transfer in Porous Media. Emerging Topics in Heat and Mass Transfer in Porous Media 219 235 .
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Nanfeng Sun, Nigel B. Wood, Alun D. Hughes, Simon A. M. Thom & X. Yun Xu. (2007) Influence of Pulsatile Flow on LDL Transport in the Arterial Wall. Annals of Biomedical Engineering 35:10, pages 1782-1790.
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N. Sun, N. B. Wood, A. D. Hughes, S. A. M. Thom & X. Yun Xu. (2007) Effects of transmural pressure and wall shear stress on LDL accumulation in the arterial wall: a numerical study using a multilayered model. AJP: Heart and Circulatory Physiology 292:6, pages H3148-H3157.
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Nanfeng Sun, Nigel B. Wood, Alun D. Hughes, Simon A. M. Thom & X. Yun Xu. (2006) Fluid-Wall Modelling of Mass Transfer in an Axisymmetric Stenosis: Effects of Shear-Dependent Transport Properties. Annals of Biomedical Engineering 34:7, pages 1119-1128.
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L. Ai & K. Vafai. (2006) A coupling model for macromolecule transport in a stenosed arterial wall. International Journal of Heat and Mass Transfer 49:9-10, pages 1568-1591.
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