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Pledget-Armed Sutures Affect the Haemodynamic Performance of Biologic Aortic Valve Substitutes: A Preliminary Experimental and Computational Study

机译:纹状缝合线影响生物主动脉瓣替代物的血流动力学性能:初步的实验和计算研究。

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摘要

Surgical aortic valve replacement is the most common procedure of choice for the treatment of severe aortic stenosis. Bioprosthetic valves are traditionally sewed-in the aortic root by means of pledget-armed sutures during open-heart surgery. Recently, novel bioprostheses which include a stent-based anchoring system have been introduced to allow rapid implantation, therefore reducing the duration and invasiveness of the intervention. Different effects on the hemodynamics were clinically reported associated with the two technologies. The aim of this study was therefore to investigate whether the differences in hemodynamic performances are an effect of different anchoring systems. Two commercially available bio-prosthetic aortic valves, one sewed-in with pledget-armed sutures and one rapid-deployment, were thus tested in this study by means of a combined approach of experimental and computational tools. In vitro experiments were performed to evaluate the overall hydrodynamic performance under identical standard conditions; computational fluid dynamics analyses were set-up to explore local flow variations due to different design of the anchoring system. The results showed how the performance of cardiac valve substitutes is negatively affected by the presence of pledget-armed sutures. These are causing flow disturbances, which in turn increase the mean pressure gradient and decrease the effective orifice area. The combined approach of experiments and numerical simulations can be effectively used to quantify the detailed relationship between local fluid-dynamics and overall performances associated with different valve technologies.
机译:外科主动脉瓣置换术是治疗严重主动脉瓣狭窄的最常见选择。传统上,在心脏直视手术中,通过带刺的缝合线将生物人工瓣膜缝合在主动脉根部。近来,已经引入了包括基于支架的锚固系统的新型生物假体以允许快速植入,因此减少了介入的持续时间和侵入性。临床上报道了两种技术对血液动力学的不同影响。因此,本研究的目的是调查血液动力学性能的差异是否是不同锚固系统的影响。因此,本研究通过实验和计算工具相结合的方法测试了两种市售的生物人工主动脉瓣,其中一种缝合有小臂缝合线,一种迅速部署。进行了体外实验,以评估在相同标准条件下的总体水动力性能;建立了计算流体动力学分析,以探索由于锚固系统设计不同而引起的局部流动变化。结果表明,存在小臂缝合线会对心脏瓣膜替代物的性能产生负面影响。这些会引起流动扰动,进而增加平均压力梯度并减小有效孔口面积。实验和数值模拟相结合的方法可以有效地用于量化局部流体动力学与与不同阀门技术相关的整体性能之间的详细关系。

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