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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Influence of vessel curvature and plaque composition on drug transport in the arterial wall following drug-eluting stent implantation
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Influence of vessel curvature and plaque composition on drug transport in the arterial wall following drug-eluting stent implantation

机译:血管曲率和斑块组成对药物洗脱支架植入后动脉壁的药物运输的影响

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摘要

In the last decade, many computational models have been developed to describe the transport of drug eluted from stents and the subsequent uptake into arterial tissue. Each of these models has its own set of limitations: for example, models typically employ simplified stent and arterial geometries, some models assume a homogeneous arterial wall, and others neglect the influence of blood flow and plasma filtration on the drug transport process. In this study, we focus on two common limitations. Specifically, we provide a comprehensive investigation of the influence of arterial curvature and plaque composition on drug transport in the arterial wall following drug-eluting stent implantation. The arterial wall is considered as a three-layered structure including the subendothelial space, the media and the adventitia, with porous membranes separating them (endothelium, internal and external elastic lamina). Blood flow is modelled by the Navier-Stokes equations, while Darcy's law is used to calculate plasma filtration through the porous layers. Our findings demonstrate that arterial curvature and plaque composition have important influences on the spatiotemporal distribution of drug, with potential implications in terms of effectiveness of the treatment. Since the majority of computational models tend to neglect these features, these models are likely to be under- or over-estimating drug uptake and redistribution in arterial tissue.
机译:在过去的十年中,已经开发了许多计算模型来描述从支架洗脱的药物和随后的动脉组织的吸收。这些模型中的每一个都有自己的局限性:例如,模型通常采用简化的支架和动脉几何形状,一些型号呈现均匀的动脉壁,其他型号忽略了血流量和血浆过滤对药物运输过程的影响。在这项研究中,我们专注于两个共同的局限性。具体而言,我们对药物洗脱支架植入后动脉壁上的动脉曲率和斑块组成对动脉壁的影响的全面调查。动脉壁被认为是一种三层结构,包括潜水空间,培养基和外膜,其中多孔膜分离它们(内皮,内部和外部弹性薄膜)。血流由Navier-Stokes方程式建模,而Darcy的定律用于通过多孔层计算血浆过滤。我们的研究结果表明,动脉曲率和斑块组成对药物的时空分布具有重要影响,具有对治疗的有效性方面的潜在影响。由于大多数计算模型倾向于忽视这些特征,因此这些模型可能在动脉组织中估计或过度估算药物吸收和再分配。

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