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首页> 外文期刊>Cardiovascular engineering and technology >Long-Term Venovenous Connection for Extracorporeal Carbon Dioxide Removal (ECCO2R)-Numerical Investigation of the Connection to the Common Iliac Veins
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Long-Term Venovenous Connection for Extracorporeal Carbon Dioxide Removal (ECCO2R)-Numerical Investigation of the Connection to the Common Iliac Veins

机译:用于体外二氧化碳的长期矛盾去除(ECCO2R) - 与普通髂静脉连接的数值调查

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Purpose-Currently used cannulae for extracorporeal carbon dioxide removal (ECCO_2R) are associated with complications such as thrombosis and distal limb ischemia, especially for long-term use. We hypothesize that the risk of these complications is reducible by attaching hemodynamically optimized grafts to the patient's vessels. In this study, as a first step towards a long-term stable ECCO_2R connection, we investigated the feasibility of a venovenous connection to the common iliac veins. To ensure its applicability, the drainage of reinfused blood (recirculation) and high wall shear stress (WSS) must be avoided. Methods-A reference model was selected for computational fluid dynamics, on the basis of the analysis of imaging data. Initially, a sensitivity analysis regarding recirculation was conducted using as variables: blood flow, the distance of drainage and return to the iliocaval junction, as well as the diameter and position of the grafts. Subsequently, the connection was optimized regarding recirculation and the WSS was evaluated. We validated the simulations in a silicone model traversed by dyed fluid.
机译:目的目前用于体外二氧化碳清除(ECCO_2R)的套管与血栓形成和远端肢体缺血等并发症有关,尤其是长期使用。我们假设,通过将血流动力学优化的移植物连接到患者的血管上,这些并发症的风险是可以降低的。在这项研究中,作为建立长期稳定的ECCO_2R连接的第一步,我们研究了与髂总静脉建立静脉-静脉连接的可行性。为了确保其适用性,必须避免再融合血液的排出(再循环)和高壁剪切应力(WSS)。方法:在分析成像数据的基础上,选择计算流体力学的参考模型。最初,以血流量、引流和回流至髂腔交界处的距离以及移植物的直径和位置为变量,对再循环进行敏感性分析。随后,针对再循环对连接进行了优化,并对WSS进行了评估。我们在一个硅树脂模型中验证了模拟结果,该模型被染色流体穿过。

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