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THE HEMOLYSIS EFFECT OF ROTARY CUTTING THROMBECTOMY DEVICE: THE CFD AND EXPERIMENTAL STUDY

机译:旋转切割血液切除术装置的溶血作用:CFD和实验研究

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Percutaneous mechanical thrombectomy (PMT) is an efficient way to treat the deep vein thrombosis (DVT). During the course of treatment, blood cell will be destroyed by the component of thrombectomy device, causing hemolysis. In this research, the computational fluid dynamics (CFD) methodology is used to investigate hemolysis effect of rotary cutting thrombectomy device. And a prototype of rotary cutting thrombectomy device is made to carry out two corresponding experiments to verify the simulation results. CFD results indicate that the hemolysis rate increases significantly with the rise of rotation speed of cutting component. The experimental results are in good consistence with the CFD results, and shows that the longer the working time, the higher the hemolysis rate. Thus a rotation speed between 5,000 rpm and 10,000 rpm can be considered reasonable. The results can be served as a helpful guidance for the design of such thrombectomy devices.
机译:经皮机械血栓切除术(PMT)是治疗深静脉血栓形成(DVT)的有效方法。 在治疗过程中,血液切除术装置的组分将破坏血细胞,引起溶血。 在该研究中,计算流体动力学(CFD)方法用于研究旋转切割血栓切除术装置的溶血作用。 并进行旋转切割血栓切除术装置的原型,用于执行两个相应的实验以验证模拟结果。 CFD结果表明,随着切割部件的旋转速度的升高,溶血率显着增加。 实验结果与CFD结果良好,表明工作时间越长,溶血率越高。 因此,可以认为5,000 rpm和10,000rpm之间的转速是合理的。 结果可以作为这种血栓切除术装置设计的有用指导。

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