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Numerical Assessment of Novel Helical/Spiral Grafts with Improved Hemodynamics for Distal Graft Anastomoses

机译:具有改进的血流动力学的新型螺旋/螺旋移植物的数值评估用于远端移植物吻合术

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摘要

In the present work, numerical simulations were conducted for a typical end-to-side distal graft anastomosis to assess the effects of inducing secondary flow, which is believed to remove unfavourable flow environment. Simulations were carried out for four models, generated based on two main features of 'out-of-plane helicity' and 'spiral ridge' in the grafts as well as their combination. Following a qualitative comparison against in vitro data, various mean flow and hemodynamic parameters were compared and the results showed that helicity is significantly more effective in inducing swirling flow in comparison to a spiral ridge, while their combination could be even more effective. In addition, the induced swirling flow was generally found to be increasing the wall shear stress and reducing the flow stagnation and particle residence time within the anastomotic region and the host artery, which may be beneficial to the graft longevity and patency rates. Finally, a parametric study on the spiral ridge geometrical features was conducted, which showed that the ridge height and the number of spiral ridges have significant effects on inducing swirling flow, and revealed the potential of improving the efficiency of such designs.
机译:在当前的工作中,对典型的端到端远端移植物吻合术进行了数值模拟,以评估诱导次级血流的作用,据信这可以消除不利的血流环境。对四个模型进行了仿真,这些模型是基于移植物中“面外螺旋度”和“螺旋脊”的两个主要特征及其组合生成的。在对体外数据进行定性比较之后,比较了各种平均流量和血液动力学参数,结果表明,与螺旋脊相比,螺旋线在诱导旋流方面显着更有效,而它们的组合甚至更有效。此外,通常发现诱导的旋流会增加壁切应力并减少吻合区域和宿主动脉内的血流停滞和颗粒停留时间,这可能对移植物的寿命和通畅率有利。最后,对螺旋形脊的几何特征进行了参数研究,结果表明,脊形高度和螺旋形脊的数量对诱导旋流具有重要影响,并揭示了提高此类设计效率的潜力。

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