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首页> 外文期刊>Journal of medical engineering & technology >Residual stress distribution in a lamellar model of the arterial wall
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Residual stress distribution in a lamellar model of the arterial wall

机译:层状动脉壁模型中的残余应力分布

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摘要

Excessive wall circumferential stress in arteries caused by luminal pressure leads to endothelial damage and clinical consequences. In addition to circumferential stress, arterial wall contains residual stress with compressive and tensile components on intima and adventitia sides. The intimal compressive component compensates part of tensile stress induced by blood pressure, hence reduces severity of endothelial tension. The opening angle caused by radial cut of arterial ring defines residual stress. In this study, finite element modelling is used to evaluate residual stress in a lamellar model of human aorta with differing opening angle and elastic modulus. Results show non-linear residual stress profiles across wall thickness, influenced by structural and mechanical parameters. Elevation of opening angle from 50? to 90? leads to increase of intimal compressive component compensating up to 32.6% of the pressure-induced tensile stress. Results may be applied in study of endothelial injury caused by excessive stress in situations such as aging, hypertension and atherosclerosis.
机译:腔内压力引起的动脉壁过大应力会导致内皮损伤和临床后果。除周向应力外,动脉壁还包含残余应力,内膜和外膜侧具有压缩和拉伸成分。内膜压缩成分补偿了由血压引起的部分拉应力,因此降低了内皮张力的严重性。由动脉环的径向切割引起的打开角度定义了残余应力。在这项研究中,有限元建模用于评估具有不同张角和弹性模量的人主动脉片状模型中的残余应力。结果表明,在整个壁厚上,非线性残余应力分布受结构和机械参数的影响。开启角度从50度高?到90?导致内膜压缩成分的增加,最多补偿压力引起的拉应力的32.6%。该结果可用于研究在老化,高血压和动脉粥样硬化等情况下过度压力引起的内皮损伤。

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