首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Patient-specific wall stress analysis in cerebral aneurysms using inverse shell model.
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Patient-specific wall stress analysis in cerebral aneurysms using inverse shell model.

机译:使用逆壳模型在脑动脉瘤中进行患者特定的壁应力分析。

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摘要

Stress analyses of patient-specific vascular structures commonly assume that the reconstructed in vivo configuration is stress free although it is in a pre-deformed state. We submit that this assumption can be obviated using an inverse approach, thus increasing accuracy of stress estimates. In this paper, we introduce an inverse approach of stress analysis for cerebral aneurysms modeled as nonlinear thin shell structures, and demonstrate the method using a patient-specific aneurysm. A lesion surface derived from medical images, which corresponds to the deformed configuration under the arterial pressure, is taken as the input. The wall stress in the given deformed configuration, together with the unstressed initial configuration, are predicted by solving the equilibrium equations as opposed to traditional approach where the deformed geometry is assumed stress free. This inverse approach also possesses a unique advantage, that is, for some lesions it enables us to predict the wall stress without accurate knowledge of the wall elastic property. In this study, we also investigate the sensitivity of the wall stress to material parameters. It is found that the in-plane component of the wall stress is indeed insensitive to the material model.
机译:对患者特定的血管结构进行应力分析通常会假设,尽管处于预先变形的状态,但体内重构构型没有应力。我们认为可以使用逆方法消除该假设,从而提高应力估计的准确性。在本文中,我们介绍了一种针对非线性薄壳结构模型的脑动脉瘤进行应力分析的逆方法,并演示了使用特定于患者的动脉瘤的方法。输入来自医学图像的病变表面作为输入,该病变表面对应于在动脉压力下的变形构造。与传统方法(假定变形几何体假定无应力)相反,通过求解平衡方程可以预测给定变形构型中的壁应力以及无应力初始构型。这种逆向方法还具有独特的优势,即对于某些病变,它使我们能够预测壁应力而无需准确了解壁的弹性。在这项研究中,我们还研究了壁应力对材料参数的敏感性。发现壁应力的平面内分量确实对材料模型不敏感。

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