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Blood Damage Through a Bileaflet Mechanical Heart Valve: A Quantitative Computational Study Using a Multiscale Suspension Flow Solver

机译:通过Bileaflet机械心脏瓣膜造成的血液损害:使用多尺度悬浮流求解器的定量计算研究

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摘要

Bileaflet mechanical heart valves (BMHVs) are among the most popular prostheses to replace defective native valves. However, complex flow phenomena caused by the prosthesis are thought to induce serious thromboembolic complications. This study aims at employing a novel multiscale numerical method that models realistic sized suspended platelets for assessing blood damage potential in flow through BMHVs. A previously validated lattice-Boltzmann method (LBM) is used to simulate pulsatile flow through a 23 mm St. Jude Medical (SJM) Regent valve in the aortic position at very high spatiotemporal resolution with the presence of thousands of suspended platelets. Platelet damage is modeled for both the systolic and diastolic phases of the cardiac cycle. No platelets exceed activation thresholds for any of the simulations. Platelet damage is determined to be particularly high for suspended elements trapped in recirculation zones, which suggests a shift of focus in blood damage studies away from instantaneous flow fields and toward high flow mixing regions. In the diastolic phase, leakage flow through the b-datum gap is shown to cause highest damage to platelets. This multiscale numerical method may be used as a generic solver for evaluating blood damage in other cardiovascular flows and devices.
机译:Bileaflet机械心脏瓣膜(BMHV)是最受欢迎的假体,可以代替有缺陷的天然瓣膜。然而,假体引起的复杂血流现象被认为会引起严重的血栓栓塞并发症。这项研究旨在采用一种新颖的多尺度数值方法,该模型对实际大小的悬浮血小板进行建模,以评估流经BMHV的血液潜在损害。使用先前验证的晶格-玻尔兹曼方法(LBM)在主动脉位置以非常高的时空分辨率模拟存在23µmm St. Jude Medical(SJM)Regent 瓣膜的搏动流数千个悬浮的血小板。针对心动周期的收缩期和舒张期对血小板损伤进行建模。对于任何模拟,没有血小板超过激活阈值。对于滞留在再循环区中的悬浮元素而言,血小板损害被确定为特别高,这表明血液损害研究的重点从瞬时流场转向高流动混合区。在舒张期,显示通过b基准间隙的泄漏流对血小板造成的损害最大。这种多尺度数值方法可以用作评估其他心血管流和装置中血液损伤的通用求解器。

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