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机械循环支持期间心房对心室腔内血流模式的影响。

Effects of the atrium on intraventricular flow patterns during mechanical circulatory support.

机构信息

Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.

Ludwig Boltzmann Institute for Cardiovascular Research, Vienna, Austria.

出版信息

Int J Artif Organs. 2022 Apr;45(4):421-430. doi: 10.1177/03913988211056018. Epub 2021 Oct 29.

Abstract

Simulations of the ventricular flow patterns during left ventricular assist device (LVAD) support are mainly performed with idealized cylindrical inflow, neglecting the influence of the atrial vortex. In this study, the influence of the left atrium (LA) on the intra-ventricular flow was investigated via Computational Fluid Dynamics (CFD) simulations. Ventricular flow was simulated by a combined Eulerian (carrier flow)/Lagrangian (particles) approach taking into account either the LA or a cylindrical inflow section to mimic a fully support condition. The flow deviation at the mitral valve, the blood low-velocity volume as well as the residence time and shear stress history of the particles were calculated. Inclusion of the LA deflects the flow at the mitral valve by 25°, resulting in an asymmetric flow jet entering the left ventricle. This reduced the ventricular low-velocity volume by 40% (from 6.4 to 3.9 cm), increased (40%) the shear stress experienced by particles and correspondingly increased (27%) their residence time. Under the studied conditions, the atrial geometry plays a major role in the development of intraventricular flow patterns. A reliable prediction of blood flow dynamics and consequently thrombosis risk analysis within the ventricle requires the consideration of the LA in computational simulations.

摘要

在左心室辅助装置(LVAD)支持期间,心室流动模式的模拟主要使用理想化的圆柱形流入,忽略了心房涡流的影响。在这项研究中,通过计算流体动力学(CFD)模拟研究了左心房(LA)对室内流动的影响。通过考虑 LA 或圆柱形流入部分来模拟完全支持条件的组合欧拉(载体流)/拉格朗日(粒子)方法来模拟心室流动。计算了在二尖瓣处的流量偏差、低速血流体积以及粒子的停留时间和剪切应力历史。包含 LA 会使二尖瓣处的流动偏转为 25°,导致不对称的射流进入左心室。这将心室低速血流体积减少了 40%(从 6.4 减少到 3.9cm),增加了(40%)粒子经历的剪切应力,并相应地增加了(27%)它们的停留时间。在所研究的条件下,心房几何形状在室内流动模式的发展中起着主要作用。在计算模拟中,需要考虑 LA,以可靠地预测血流动力学,从而分析心室中的血栓形成风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7e0/8922056/5be8e91d0db1/10.1177_03913988211056018-fig1.jpg

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