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FEBio 中老化颈动脉模型中的间质流、压力和残余应力。

Interstitial flow, pressure and residual stress in the aging carotid artery model in FEBio.

机构信息

Department of Chemical Engineering, Boğaziçi University, Istanbul, 34342, Turkey.

Department of Bioengineering, Imperial College London, London, SW7 2AZ, UK.

出版信息

Biomech Model Mechanobiol. 2024 Feb;23(1):179-192. doi: 10.1007/s10237-023-01766-7. Epub 2023 Sep 5.

Abstract

Vascular smooth muscle cells (VSMCs) are subject to interstitial flow-induced shear stress, which is a critical parameter in cardiovascular disease progression. Transmural pressure loading and residual stresses alter the hydraulic conductivity of the arterial layers and modulate the interstitial fluid flux through the arterial wall. In this paper, a biphasic multilayer model of a common carotid artery (CCA) with anisotropic fiber-reinforced soft tissue and strain-dependent permeability is developed in FEBio software. After the verification of the numerical predictions, age-related arterial thickening and stiffening effects on arterial deformation and interstitial flow are computed under physiological geometry and physical parameters. We found that circumferential residual stress shifts outward in each layer and its gradient increases up to 6 times with aging. Internally pressurized CCA displays nonlinear deformation. In the aged artery, the circumferential stress becomes greater on the media layer (82-158 kPa) and lower on the intima and adventitia (19-23 kPa and 25-28 kPa, respectively). The radial compression of the intima reduces the total hydraulic conductivity by 48% in the young and 16% in the aged arterial walls. Consequently, the average radial interstitial flux increases with pressure by 14% in the young and 91% in the aged arteries. Accordingly, the flow shear stress experienced by the VSMCs becomes more significant for aged arteries, which may accelerate cardiovascular disease progression compared to young arteries.

摘要

血管平滑肌细胞(VSMCs)受到间质流引起的切应力的影响,这是心血管疾病进展的一个关键参数。跨壁压力加载和残余应力改变动脉层的水力传导率,并调节通过动脉壁的间质液通量。本文在 FEBio 软件中开发了具有各向异性纤维增强软组织和应变相关渗透性的常见颈总动脉(CCA)的双相多层模型。在验证了数值预测后,根据生理几何形状和物理参数计算了与年龄相关的动脉增厚和僵硬对动脉变形和间质流的影响。我们发现,各层的周向残余应力向外迁移,其梯度增加了 6 倍。内压 CCA 呈现出非线性变形。在老年动脉中,中层的周向应力更大(82-158kPa),内膜和外膜的周向应力更小(分别为 19-23kPa 和 25-28kPa)。内膜的径向压缩使年轻和老年动脉壁的总水力传导率分别降低了 48%和 16%。因此,在年轻动脉中,平均径向间质通量随压力增加了 14%,在老年动脉中增加了 91%。因此,VSMCs 经历的流动切应力对于老年动脉更为显著,这可能比年轻动脉加速心血管疾病的进展。

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