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在脉动流条件下,对一种新型序贯吻合移植设计模型中的流速和壁面剪应力进行体外测量。

In vitro measurements of velocity and wall shear stress in a novel sequential anastomotic graft design model under pulsatile flow conditions.

作者信息

Kabinejadian Foad, Ghista Dhanjoo N, Su Boyang, Nezhadian Mercedeh Kaabi, Chua Leok Poh, Yeo Joon Hock, Leo Hwa Liang

机构信息

Department of Biomedical Engineering, National University of Singapore, Singapore.

Education Committee, Southern Ozarks Alliance for Rural Development, Willow Springs, MO, USA.

出版信息

Med Eng Phys. 2014 Oct;36(10):1233-45. doi: 10.1016/j.medengphy.2014.06.024. Epub 2014 Aug 4.

Abstract

This study documents the superior hemodynamics of a novel coupled sequential anastomoses (SQA) graft design in comparison with the routine conventional end-to-side (ETS) anastomoses in coronary artery bypass grafts (CABG). The flow fields inside three polydimethylsiloxane (PDMS) models of coronary artery bypass grafts, including the coupled SQA graft design, a conventional ETS anastomosis, and a parallel side-to-side (STS) anastomosis, are investigated under pulsatile flow conditions using particle image velocimetry (PIV). The velocity field and distributions of wall shear stress (WSS) in the models are studied and compared with each other. The measurement results and WSS distributions, computed from the near wall velocity gradients reveal that the novel coupled SQA design provides: (i) a uniform and smooth flow at its ETS anastomosis, without any stagnation point on the artery bed and vortex formation in the heel region of the ETS anastomosis within the coronary artery; (ii) more favorable WSS distribution; and (iii) a spare route for the blood flow to the coronary artery, to avoid re-operation in case of re-stenosis in either of the anastomoses. This in vitro investigation complements the previous computational studies of blood flow in this coupled SQA design, and is another necessary step taken toward the clinical application of this novel design. At this point and prior to the clinical adoption of this novel design, in vivo animal trials are warranted, in order to investigate the biological effects and overall performance of this anastomotic configuration in vivo.

摘要

本研究记录了一种新型耦合序贯吻合(SQA)移植物设计在冠状动脉旁路移植术(CABG)中与常规传统端侧(ETS)吻合相比的优越血流动力学。使用粒子图像测速技术(PIV)在脉动流条件下研究了三种冠状动脉旁路移植术的聚二甲基硅氧烷(PDMS)模型内部的流场,包括耦合SQA移植物设计、传统ETS吻合和并行侧侧(STS)吻合。研究并比较了模型中的速度场和壁面剪应力(WSS)分布。根据近壁速度梯度计算得到的测量结果和WSS分布表明,新型耦合SQA设计具有以下优点:(i)其ETS吻合处血流均匀且平滑,在动脉床没有任何停滞点,在冠状动脉内ETS吻合的足跟区域没有涡流形成;(ii)更有利的WSS分布;(iii)为流向冠状动脉的血流提供了备用路径,以避免在任何一个吻合处发生再狭窄时需要再次手术。这项体外研究补充了之前对这种耦合SQA设计中血流的计算研究,是朝着这种新型设计的临床应用迈出的又一必要步骤。在这一点上,在这种新型设计临床应用之前,有必要进行体内动物试验,以研究这种吻合构型在体内的生物学效应和整体性能。

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