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SYNERGY OF WALL SHEAR STRESS AND CIRCUMFERENTIAL STRESS IN STRAIGHT ARTERIES

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【Author】 QIN Kai-rong Institute of Mechanobiology and Medical Engineering, Shanghai Jiaotong University, Shanghai 200240, ChinaXU Zhe, WU Hao Department of Mechanics and Engineering Science, Fudan University, Shanghai 200433, ChinaJIANG Zong-lai Institute of Mechanobiology and Medical Engineering, Shanghai Jiaotong University, Shanghai 200240, ChinaLIU Zhao-rong Department of Mechanics and Engineering Science, Fudan University, Shanghai 200433, China

【Abstract】 The Wall Shear Stress (WSS) generated by blood flow and Circumferential Stress (CS) driven by blood pressure have been thought to play an important role in blood flow-dependent phenomena such as angiogenesis, vascular remodeling, and atherosgenesis. The WSS and CS in straight arteries were calculated by measuring the blood pressure, center-line velocity, wall thickness, and radius of vessels. The WSS and CS in the time domain were then decomposed into the amplitude and phase in the frequency domain. The CS amplitude to the WSS amplitude ratio (referred as stress amplitude ratio, Zs) and the phase difference between the CS and the WSS (referred as stress phase difference, SPA) in the frequency domain were calculated to characterize the synergy of the CS and WSS. Numerical results demonstrated that the CS is not in phase with the WSS, a time delay in the time domain or a stress phase difference in the frequency domain between the WSS and the CS exists. Theoretical analysis demonstrated that the Zs and SPA are primarily determined by the local factors (blood viscosity, local inertial effects, local geometry, local elasticity) and the input impedance of whole downstream arterial beds. Because the arterial input impedance has been shown to reflect the physiological and pathological states of whole downstream arterial beds, the stress amplitude ratio Zs and stress phase difference SPA would be thought to be the appropriate indices to reflect the effects of states of whole downstream arterial beds on the local blood flow-dependent phenomena such as angiogenesis, vascular remodeling, and atherosgenesis.

【基金】 ProjectsupportedbytheNationalNaturalScienceFoundationofChina(GrantNos:10132020,10472027).
  • 【文献出处】 Journal of Hydrodynamics(Ser.B) ,水动力学研究与进展B辑(英文版) , 编辑部邮箱 ,2005年06期
  • 【分类号】R318.01
  • 【被引频次】19
  • 【下载频次】37
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