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Analysis and preparation of rotational flow mechanism of artificial blood vessel with spiral folds on inner wall

机译:内壁螺旋折叠人工血管旋转流动机理的分析与制备

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摘要

The swirling motion of blood flow is a widespread physiological flow phenomenon in the human body. The probability of cardiovascular and cerebrovascular diseases could be effectively reduced by swirling blood flow. In this study, first we proposed a new integrated vascular model with spiral folds on the inner wall. Based on the model, fluid-solid coupling simulation analyses of blood and blood vessels were performed. The results indicate that the spiral folds cause the swirling flow. This model provides new insights that may be of use for developing methods to generate swirling flow. Second, we discussed the specific effects of different fold parameters' characteristics on swirling flow. We found that increasing the pitch or cross-sectional area enhanced the swirling flow, specifically increasing cross-sectional diameter by 0.2mm, wall shear stress by about 2mm Hg, and deformation by about 0.2 mu m. Finally, we proposed a new method to prepare an integrated artificial blood vessel based on the heteromorphic channel co-extrusion method; the inner wall of this blood vessel had a spiral fold structure and was micron scale in width. This study offers important guidance for the design of interventional treatments involving swirling flow.
机译:血流的旋转运动是人体中的广泛生理流动现象。通过旋流血液流动可以有效地减少心血管和脑血管疾病的可能性。在这项研究中,首先我们提出了一种新的综合血管模型,内壁上的螺旋褶皱。基于该模型,进行了血液和血管的流体固耦合模拟分析。结果表明螺旋折是导致旋流。该模型提供了新的见解,可以用于开发生成旋流的方法。其次,我们讨论了不同折叠参数对旋转流动特性的特定影响。我们发现,增加俯仰或横截面积增强旋流,特别是将横截面直径提高0.2mm,壁剪切应力约2mm汞柱,并通过约0.2μm变形。最后,我们提出了一种基于异统沟共挤出方法制备综合人工血管的新方法;该血管的内壁具有螺旋折叠结构,宽度为微米垢。本研究为涉及旋流的介入治疗设计提供了重要指导。

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