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Dependence of the frequency spectrum of small amplitude vibrations superimposed on finite deformations of a nonlinear, cylindrical elastic body on residual stress

机译:小振幅振动频谱叠加在非线性圆柱弹性体的有限变形对残余应力的影响上

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摘要

We model and analyze the response of nonlinear, residually stressed elastic bodies subjected to small amplitude vibrations superimposed upon large deformations. The problem derives from modeling the use of intravascular ultrasound (IVUS) imaging to interrogate atherosclerotic plaques in vivo in large arteries. The goal of this investigation is twofold: (i) introduce a modeling framework for residual stress that unlike traditional Fung type classical opening angle models may be used for a diseased artery, and (ii) investigate the sensitivity of the spectra of small amplitude high frequency time harmonic vibrations superimposed on a large deformation to the details of the residual stress stored in arteries through a numerical simulation using physiologic parameter values under both low and high blood pressure loadings. The modeling framework also points the way towards an inverse problem using IVUS techniques to estimate residual stress in healthy and diseased arteries.
机译:我们对非线性,残余应力弹性体的响应进行建模和分析,该弹性体在叠加大变形的情况下经受小振幅振动。该问题源自对使用血管内超声(IVUS)成像在体内对大动脉中的动脉粥样硬化斑块进行建模的模型。该研究的目的是双重的:(i)介绍一种残余应力的建模框架,该框架不同于传统的Fung型经典张角模型可用于患病的动脉,以及(ii)研究小振幅高频频谱的敏感性在高和低血压情况下,使用生理参数值进行数值模拟,通过数值模拟将时间谐波振动大变形叠加到存储在动脉中的残余应力的细节上。该建模框架还指出了使用IVUS技术估计健康和患病动脉残余应力的逆问题的方法。

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