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正弦脉动流中时空红细胞聚集的数值模拟。

Numerical simulation of spatiotemporal red blood cell aggregation under sinusoidal pulsatile flow.

机构信息

Department of Ocean System Engineering, Jeju National University, Jeju, Korea.

Department of Radiology and Medical Imaging, University of Virginia, Charlottesville, VA, USA.

出版信息

Sci Rep. 2021 May 11;11(1):9977. doi: 10.1038/s41598-021-89286-1.

Abstract

Previous studies on red blood cell (RBC) aggregation have elucidated the inverse relationship between shear rate and RBC aggregation under Poiseuille flow. However, the local parabolic rouleaux pattern in the arterial flow observed in ultrasonic imaging cannot be explained by shear rate alone. A quantitative approach is required to analyze the spatiotemporal variation in arterial pulsatile flow and the resulting RBC aggregation. In this work, a 2D RBC model was used to simulate RBC motion driven by interactional and hydrodynamic forces based on the depletion theory of the RBC mechanism. We focused on the interaction between the spatial distribution of shear rate and the dynamic motion of RBC aggregation under sinusoidal pulsatile flow. We introduced two components of shear rate, namely, the radial and axial shear rates, to understand the effect of sinusoidal pulsatile flow on RBC aggregation. The simulation results demonstrated that specific ranges of the axial shear rate and its ratio with radial shear rate strongly affected local RBC aggregation and parabolic rouleaux formation. These findings are important, as they indicate that the spatiotemporal variation in shear rate has a crucial role in the aggregate formation and local parabolic rouleaux under pulsatile flow.

摘要

先前关于红细胞(RBC)聚集的研究已经阐明了在泊肃叶流中剪切率与 RBC 聚集之间的反比关系。然而,超声成像中观察到的动脉流中的局部抛物线型红细胞聚集模式不能仅用剪切率来解释。需要一种定量方法来分析动脉脉动流中的时空变化以及由此产生的 RBC 聚集。在这项工作中,使用二维 RBC 模型基于 RBC 机制的耗竭理论模拟了相互作用和流体动力对 RBC 运动的驱动。我们关注的是在正弦脉动流下剪切率的空间分布与 RBC 聚集的动态运动之间的相互作用。我们引入了两个剪切率分量,即径向剪切率和轴向剪切率,以了解正弦脉动流对 RBC 聚集的影响。模拟结果表明,轴向剪切率的特定范围及其与径向剪切率的比值强烈影响局部 RBC 聚集和抛物线型红细胞聚集的形成。这些发现很重要,因为它们表明在脉动流中,剪切率的时空变化对聚集形成和局部抛物线型红细胞聚集具有关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7387/8113559/39bb81ce127f/41598_2021_89286_Fig1_HTML.jpg

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