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Computational Analysis on Upper Extremity Vein Graft: Simulation on Kinked Vein Graft

机译:上肢静脉移植物的计算分析:扭结静脉移植物的仿真

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An artery reconstruction in upper extremities is rare performed compared to the artery reconstruction in lower extremities. Primary vascular repair was performed in many cases. As to alleviate vascular occlusion, an interposition vein graft or venous bypass grafting were applied. However, one or more the internal diameters of applied vein graft are blocked or severely norrowed due to the kinking failure on saphenous vein graft. The objective of this study is to investigate the blood flow influence on vein graft with kinking failure. The 3-D computational fluid dynamic method was employed to determine velocity, pressure gradient, resistance of blood flow and wall shear stress on the kinked vein graft. We expect that velocity, pressure gradient, resistance of blood flow and wall shear stress on kinked vein graft to behave non-hydraulically compared to an ideal straight graft. Futhermore, a longitudinal impedence modulus (ZL) is expected to be insufficient due to kinking failure on vein graft.
机译:与下肢动脉重建相比,上肢中的动脉重建是罕见的。在许多情况下进行一次血管修复。为了缓解血管闭塞,施加腔室静脉移植物或静脉旁路接枝。然而,由于隐式静脉移植物上的扭结失败,施加静脉移植物的一个或多个内径被阻塞或严重透露。本研究的目的是探讨血流对静脉移植物的血流影响与扭结故障。采用3-D计算流体动态方法来确定血流血流和壁剪切应力的速度,压力梯度,抗壁剪切应力。我们预计速度,压力梯度,血流和壁剪切应力对扭结的静脉移植物的抗剪切应力,与理想的直接移植物相比,非液压方式。由于静脉移植物上的扭结故障,预期纵向阻抗模量(ZL)预计将不足。

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