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首页> 外文期刊>International Journal of Applied Mechanics and Engineering >EX VIVO AND INSILICO STUDY OF HUMAN COMMON CAROTID ARTERIES PRESSURE RESPONSE IN PHYSIOLOGICAL AND INVERTED STATE
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EX VIVO AND INSILICO STUDY OF HUMAN COMMON CAROTID ARTERIES PRESSURE RESPONSE IN PHYSIOLOGICAL AND INVERTED STATE

机译:生理和颠倒状态下人类共同颈动脉压力反应的体外研究和矽肺研究

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Arterial walls are a multilayer structures with nonlinear material characteristics. Furthermore, residual stresses exist in unloaded state (zero-pressure condition) and they affect arterial behavior. To investigate these phenomena a number of theoretical and numerical studies were performed, however no experimental validation was proposed and realized yet. We cannot get rid of residual stresses without damaging the arterial segment. In this paper we propose a novel experiment to validate a numerical model of artery with residual stresses. The inspiration for our study originates from experiments made by Dobrin on dogs' arteries (1999). We applied the idea of turning the artery inside out. After such an operation the sequence of layer is reversed and the residual stresses are re-ordered. We performed several pressure-inflation tests on human Common Carotid Arteries (CCA) in normal and inverted configurations. The nonlinear responses of arterial behavior were obtained and compared to the numerical model. Computer simulations were carried out using the commercial software which applied the finite element method (FEM). Then, these results were discussed.
机译:动脉壁是具有非线性材料特性的多层结构。此外,残余应力在空载状态(零压力条件)下存在,并且会影响动脉行为。为了研究这些现象,进行了许多理论和数值研究,但是尚未提出和实现实验验证。在不损坏动脉段的情况下,我们无法摆脱残余应力。在本文中,我们提出了一项新颖的实验来验证具有残余应力的动脉数值模型。我们研究的灵感来自多布林在狗的动脉上进行的实验(1999年)。我们采用了将动脉内翻的想法。在这样的操作之后,层的顺序被反转并且残余应力被重新排序。我们对正常和倒置形态的人颈总动脉(CCA)进行了多次压力充气测试。获得了动脉行为的非线性响应,并将其与数值模型进行了比较。使用应用有限元方法(FEM)的商业软件进行了计算机模拟。然后,讨论了这些结果。

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