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Numerical Simulation of Hemodynamic Changes in Central Veins after Tunneled Cuffed Central Venous Catheter Placement in Patients under Hemodialysis

机译:血液透析患者套入袖口中心静脉导管后中央静脉血流动力学变化的数值模拟

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摘要

The tunneled central venous catheter (CVC) plays an important role for hemodialysis patients, but CVC-related thrombosis in the central veins remain problematic. This study is the first try to numerically find out what hemodynamic parameters are predisposed to the initiation and formation of thrombus after CVC insertion. And the potential relationship between hemodynamic parameters and the incidence rates of thrombosis occurrence was explored. The results revealed that the CVC insertion led to a significant increase of hydraulic resistance, wide-ranging abnormally high wall shear stress (WSS), and a great loss of flow rotation in the vein. Moreover, the clinical data showed that thrombosis mainly occurred at sections where most blood flow lost spiral rotation after the CVC insertion, but no corresponding match was observed between the occurrence of thrombosis and the flow velocity or WSS. We speculate that the destruction of the flow rotation in the central vein is a precursor to the thrombus formation around CVC, and an introduction of spiral flow with the CVC insertion may possibly help to protect the central vein from thrombosis. Further animal and clinical experiments should be carried out to test and verify this speculation.
机译:隧道式中央静脉导管(CVC)在血液透析患者中​​起着重要作用,但是中央静脉中与CVC相关的血栓形成仍然存在问题。这项研究是首次尝试从数值上发现在CVC插入后哪些血流动力学参数对血栓的形成和形成有促进作用。并探讨了血流动力学参数与血栓形成发生率之间的潜在关系。结果表明,CVC插入导致水力阻力显着增加,范围广泛的异常高壁切应力(WSS)以及静脉内流动旋转的巨大损失。此外,临床数据显示,血栓形成主要发生在CVC插入后大多数血流失去螺旋旋转的区域,但在血栓形成的发生与流速或WSS之间未发现相应的匹配。我们推测中心静脉内血流旋转的破坏是CVC周围血栓形成的先兆,而随着CVC插入而引入螺旋流可能有助于保护中心静脉免于血栓形成。应该进行进一步的动物和临床实验以测试和验证这种推测。

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