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Modeling of blood flow through sutured micro-vascular anastomoses

机译:缝合微血管吻合术的血流建模

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Microanastomosis is a surgical procedure used to reconnect two blood vessels using sutures. The optimal microanastomosis may be predicted by assessing the factors that influence this invasive procedure. Blood flow and hemodynamics following microanastomosis are important factors for the successful longevity of this operation. How is the blood flow affected by the presence of sutures? Computational Fluid Dynamics (CFD) is a powerful tool that permits the estimation of specific quantities, such as fluid stresses, that are hardly measurable in vivo. In this study, we propose a methodology which evaluates the alterations in the hemodynamic status due to microanastomosis. A CFD model of a reconstructed artery has been developed, based on anatomical information provided by intravascular ultrasound and angiography, and was used to simulate blood flow after microanastomosis. The 3D reconstructed arterial segments are modeled as non-compliant 1.24 - 1.47 mm diameter ducts, with approximately 0.1 mm arterial thickness. The blood flow is considered laminar and the no-slip condition is imposed on the boundary wall, which is assumed to be rigid. In analyzing the results, the distribution of the wall shear stress (WSS) is presented in the region of interest, near the sutures. The results indicate that high values of WSS appear in the vicinity of sutures. Such regions may promote thrombus formation and subsequently anastomotic failure, therefore their meticulous study is of high importance.
机译:微吻合术是一种外科手术方法,用于使用缝合线重新连接两个血管。可以通过评估影响这种侵入性手术的因素来预测最佳的微吻合术。微吻合术后的血流和血流动力学是该手术成功长寿的重要因素。缝线对血流有何影响?计算流体动力学(CFD)是一种功能强大的工具,可以估算体内难以测量的特定量,例如流体应力。在这项研究中,我们提出了一种方法,用于评估由于微吻合术引起的血液动力学状态的变化。基于血管内超声和血管造影提供的解剖学信息,已开发了重建动脉的CFD模型,并用于模拟微解剖后的血流。将3D重建的动脉段建模为直径不合格的1.24-1.47 mm导管,动脉厚度约为0.1 mm。认为血流是层流的,并且在假定为刚性的边界壁上施加了防滑条件。在分析结果时,在缝合线附近的感兴趣区域中显示了壁切应力(WSS)的分布。结果表明,高WSS值出现在缝合线附近。这些区域可能会促进血栓形成并随后导致吻合口破裂,因此,对其进行细致的研究非常重要。

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