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- W2370949114 abstract "In this paper, the circumferential stress distribution along the arterial wall thickness was determined using a strain energy density function. This function provides a description of the wall properties through intraluminal pressure - volume experimental data in vivo axial extension ratio. Depending on assumptions of residual stress, the results obtained in rat abdominal aorta are different. If zero residual stress is assumed, the results indicate that a strong circumferential stress concentration should appear in the inner arterial wall, even under normal physiological loading condi-tions(such as p = 13. 3kPa), the inner wall to outer wall stress ratio will be about 15. However, if residual stress were considered in calculation, the circumferential stress distribution over the cross - section of the wall will be rather uniform and the inner wall to outer wall stress ratio will only be almost 2. Corroboration was observed between the calculation results and the physiological behavior of the arterial wall. The calculation results were consistent with the mechanical properties of the vessel wall proposed by Fung et al. With the proposed method of this paper, it is believed that experimental procedures and data analysis are more streamlined and straightforward." @default.
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- W2370949114 date "2000-01-01" @default.
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- W2370949114 title "On Circumferential Stress in Arterial Wall at in Vivo Axial Extension Ratio" @default.
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