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A Numerical Tool for the Coupled Mechanical Assessment of Anastomoses of PTFE Arterio-venous Access Grafts

机译:PTFE动静脉接管吻合口机械耦合评估的数值工具

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摘要

The anastomotic angle is assumed to affect the performance of artdrio-venous (AV) access grafts by altering wall shear stress (WSS) and wall tension. The objective of this study was to develop a coupled numerical tool to assess fluid and structural anastomotic mechanics of a straight upper arm access graft. 3D computational fluid dynamics (CFD) and finite element (FE) models were developed for arterial and venous anastomoses with different graft attachment angles. The fluid simulations were executed using flow velocity profiles for anastomotic inlets obtained from a whole-graft CFD model. A mesh adaptation algorithm was developed to couple CFD and FE meshes and capture fluid structure interactions. The coupling algorithm enabled transfer of blood pressure (BP) and WSS predicted with the CFD models to the FE models as loadings. The deformations induced in the FE models were used to update the CFD geometries after which BP and WSS were recalculated and the process repeated until equilibrium between fluid and solid models. Maximum BP in the vein was 181 mmHg. WSS peaked at 2.3 and 0.7 Pa and the structural wall stress reached 3.38 and 3.36 kPa in arterial and venous anastomosis. Since flow-induced wall tension has been identified as a contributor to access graft failure along with WSS, the computational tool will be useful in studying the coupled mechanics in these grafts. Initial investigations of arterial and venous anastomotic end-to-side configuration indicated a slightly better performance of the 90? configuration over 135deg arterial and 45deg venous configurations.
机译:假定吻合角会通过改变壁切应力(WSS)和壁张力来影响动静脉(AV)通路移植物的性能。这项研究的目的是开发一种耦合的数值工具,以评估直臂上臂移植物的流体和结构吻合力学。针对具有不同移植物附着角度的动脉和静脉吻合术,开发了3D计算流体动力学(CFD)和有限元(FE)模型。使用从全移植CFD模型获得的吻合口流速曲线执行流体模拟。开发了网格自适应算法来耦合CFD和FE网格并捕获流体结构相互作用。耦合算法可以将用CFD模型预测的血压(BP)和WSS作为负荷转移到FE模型。 FE模型中引起的变形用于更新CFD几何形状,此后重新计算BP和WSS并重复该过程,直到流体和固体模型之间达到平衡。静脉中的最大BP为181 mmHg。在动脉和静脉吻合中,WSS在2.3和0.7 Pa达到峰值,结构壁应力分别达到3.38和3.36 kPa。由于流动引起的壁张力已被确定与WSS一起导致移植物失效,因此该计算工具将有助于研究这些移植物中的耦合力学。对动脉和静脉吻合端对端构型的初步研究表明90?的性能稍好。 135度动脉和45度静脉构型的配置。

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