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解剖形状二尖瓣用于血液动力学测试。

An Anatomically Shaped Mitral Valve for Hemodynamic Testing.

机构信息

Laboratory of Cardiovascular Fluid Dynamics, Concordia University, Montreal, QC, H3G 1M8, Canada.

Mechanical Power Engineering Department, Assiut University, Assiut, 71515, Egypt.

出版信息

Cardiovasc Eng Technol. 2024 Jun;15(3):374-381. doi: 10.1007/s13239-024-00714-5. Epub 2024 Jan 16.

Abstract

In vitro modeling of the left heart relies on accurately replicating the physiological conditions of the native heart. The targeted physiological conditions include the complex fluid dynamics coming along with the opening and closing of the aortic and mitral valves. As the mitral valve possess a highly sophisticated apparatus, thence, accurately modeling it remained a missing piece in the perfect heart duplicator puzzle. In this study, we explore using a hydrogel-based mitral valve that offers a full representation of the mitral valve apparatus. The valve is tested using a custom-made mock circulatory loop to replicate the left heart. The flow analysis includes performing particle image velocimetry measurements in both left atrium and ventricle. The results showed the ability of the new mitral valve to replicate the real interventricular and atrial flow patterns during the whole cardiac cycle. Moreover, the investigated valve has a ventricular vortex formation time of 5.2, while the peak e- and a-wave ventricular velocities was 0.9 m/s and 0.4 m/s respectively.

摘要

体外左心模型的建立依赖于对心脏天然生理条件的准确复制。目标生理条件包括与主动脉瓣和二尖瓣的开闭相伴的复杂流体动力学。由于二尖瓣具有高度复杂的装置,因此准确地对其进行建模一直是完美心脏复制拼图中缺失的一块。在这项研究中,我们探索使用基于水凝胶的二尖瓣,它提供了二尖瓣装置的完整表示。该瓣膜使用定制的模拟循环回路进行测试,以复制左心。流场分析包括在左心房和左心室进行粒子图像测速测量。结果表明,新型二尖瓣能够在整个心动周期内复制真实的室间隔和心房流场模式。此外,所研究的瓣膜的心室涡流形成时间为 5.2,而心室 e 波和 a 波的峰值速度分别为 0.9m/s 和 0.4m/s。

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