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Flow-induced platelet activation and damage accumulation in a mechanical heart valve: numerical studies.

机译:流动引起的血小板活化和机械性心脏瓣膜中的损伤累积:数值研究。

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摘要

A model for platelet activation based on the theory of damage, incorporating cumulative effects of stress history and past damage (senescence) was applied to a three-dimensional (3-D) model of blood flow through a St. Jude Medical (SJM) bileaflet mechanical heart valve (MHV), simulating flow conditions after implantation. The calculations used unsteady Reynolds-averaged Navier-Stokes formulation with non-Newtonian blood properties. The results were used to predict platelet damage from total stress (shear, turbulent, deformation), and incorporate the contribution of repeated passages of the platelets along pertinent trajectories. Trajectories that exposed the platelets to elevated levels of stress around the MHV leaflets and led them to entrapment within the complex 3-D vortical structures in the wake of the valve significantly enhanced platelet activation. This damage accumulation model can be used to quantify the thrombogenic potential of implantable cardiovascular devices, and indicate the problem areas of the device for improving their designs.
机译:一个基于损伤理论的血小板活化模型,结合了应力历史和过去损伤(衰老)的累积效应,被应用于通过圣裘德医学(SJM)双叶的血流的三维(3-D)模型机械心脏瓣膜(MHV),模拟植入后的血流状况。该计算使用具有非牛顿血液特性的非恒定雷诺平均Navier-Stokes公式。该结果用于预测总应力(剪切,湍流,变形)对血小板的损害,并结合血小板沿相关轨迹反复通过的贡献。将瓣膜暴露在MHV小叶周围的应力水平升高并导致其在瓣膜唤醒后陷于复杂的3D旋涡结构内的轨迹显着增强了血小板活化。该损伤累积模型可用于量化可植入心血管设备的血栓形成潜力,并指出设备的问题区域以改善其设计。

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