首页> 外文期刊>Annals of Biomedical Engineering >Simulation of the Three-Dimensional Hinge Flow Fields of a Bileaflet Mechanical Heart Valve Under Aortic Conditions
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Simulation of the Three-Dimensional Hinge Flow Fields of a Bileaflet Mechanical Heart Valve Under Aortic Conditions

机译:双主动脉机械心脏瓣膜在主动脉条件下的三维铰链流场的模拟

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Thromboembolic complications of bileaflet mechanical heart valves (BMHV) are believed to be due to detrimental stresses imposed on blood elements by the hinge flows. Characterization of these flows is thus crucial to identify the underlying causes for complications. In this study, we conduct three-dimensional pulsatile flow simulations through the hinge of a BMHV under aortic conditions. Hinge and leaflet geometries are reconstructed from the Micro-Computed Tomography scans of a BMHV. Simulations are conducted using a Cartesian sharp-interface immersed-boundary methodology combined with a second-order accurate fractional-step method. Physiologic flow boundary conditions and leaflet motion are extracted from the Fluid–Structure Interaction simulations of the bulk of the flow through a BMHV. Calculations reveal the presence, throughout the cardiac cycle, of flow patterns known to be detrimental to blood elements. Flow fields are characterized by: (1) complex systolic flows, with rotating structures and slow reverse flow pattern, and (2) two strong diastolic leakage jets accompanied by fast reverse flow at the hinge bottom. Elevated shear stresses, up to 1920 dyn/cm2 during systole and 6115 dyn/cm2 during diastole, are reported. This study underscores the need to conduct three-dimensional simulations throughout the cardiac cycle to fully characterize the complexity and thromboembolic potential of the hinge flows.
机译:人们认为,双叶机械心脏瓣膜(BMHV)的血栓栓塞并发症是由于铰链流施加在血液元素上的有害应力所致。因此,对这些血流进行表征对于确定并发症的根本原因至关重要。在这项研究中,我们在主动脉条件下通过BMHV的铰链进行三维脉动流模拟。铰链和小叶的几何形状是通过BMHV的微型计算机断层扫描扫描重建的。使用笛卡尔锐角界面沉浸边界方法与二阶精确分数步法相结合进行模拟。从流经BMHV的大部分流体的流固耦合模拟中提取了生理流动边界条件和小叶运动。计算表明,在整个心动周期中,存在着对血液成分有害的流动模式。流场的特征在于:(1)复杂的收缩流,具有旋转结构和缓慢的逆流模式,(2)两条强烈的舒张性泄漏射流伴随着铰链底部的快速逆流。据报道,在心脏收缩期剪切应力升高至1920 dyn / cm 2 ,在心脏舒张期剪切应力高达6115 dyn / cm 2 。这项研究强调需要在整个心动周期进行三维模拟,以充分表征铰链流的复杂性和血栓栓塞潜力。

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