Stretch and stress distributions in the human artery based on two-layer model considering residual stresses

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作者
Keiichi Takamizawa
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Biomechanics and Modeling in Mechanobiology | 2022年 / 21卷
关键词
Human artery; Two-layer model; Residual stress; Riemannian stress-free configuration;
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摘要
The objective is to know the stress distributions in the arterial walls under residual stresses based on two-layer model. Human common carotid arteries were analysed to show stress distributions at physiological and supraphysiological intraluminal pressures. The analyses for the loaded states were performed with stretch ratios with reference to a Riemannian stress-free configuration which is a 3D non-Euclidean manifold due to the nonzero Riemann curvature tensor. The experimental data obtained by other literature were used for the common carotid arteries to analyse the stretch and stress distributions in the arterial wall although kinematics is different from the literature. The stretches and stresses were calculated for the unloaded state, i.e. the residual stretches and stresses. And those at the axial stretch ratio 1.1 with reference to the unloaded state were calculated at the intraluminal pressures 16, 50, and 100 kPa. The stresses increased from the inner surface to the outer surface at all pressures analysed. These results suggest that in the human arteries the mechanical loads are mainly supported with the adventitia even though the media and intima play an important role to control of physiological functions.
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页码:135 / 146
页数:11
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  • [1] Chuong CJ(1983)Three-dimensional stress distribution in arteries J Biomech Eng 105 268-274
  • [2] Fung YC(1986)On residual stresses in arteries J Biomech Eng 108 189-192
  • [3] Chuong CJ(1989)Change of residual strains in arteries due to hypertrophy caused by aortic constriction Circ Res 65 1340-1349
  • [4] Fung YC(2007)Computational stress-deformation analysis of arterial walls including high-pressure response Int J Cardiol 116 78-85
  • [5] Fung YC(2000)A new constitutive framework for arterial wall mechanics and a comparative study of material models J Elast 61 1-48
  • [6] Liu SQ(2005)Determination of layer-specific mechanical properties of human coronary arteries with nonatherosclerotic intimal thickening and related constitutive modeling Am J Physiol Heart Circ Physiol 289 H2048-H2058
  • [7] Holzapfel GA(2007)Layer-specific 3D residual deformation of human aortas with non-atherosclerotic intimal thickening Ann Biomed Eng 35 530-545
  • [8] Gasser TC(2007)Theory of residual stresses with application to an arterial geometry Arch Mech 59 341-364
  • [9] Holzapfel GA(2004)Biaxial incremental homeostatic elastic moduli of coronary artery: tow-layer model Am J Physiol Heart Circ Physiol 287 H1663-H1669
  • [10] Gasser TC(1969)The elastic symmetry of arterial segments in dogs Cir Res 24 1-8