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法洛四联症修复术后肺动脉瓣反流如何改变右心室的血流动力学:一项体外研究。

How pulmonary valve regurgitation after tetralogy of fallot repair changes the flow dynamics in the right ventricle: An in vitro study.

作者信息

Mikhail Amanda, Labbio Giuseppe Di, Darwish Ahmed, Kadem Lyes

机构信息

Laboratory of Cardiovascular Fluid Dynamics, Mechanical Industrial, and Aerospace Engineering, Concordia University, QC, Canada.

Laboratory of Cardiovascular Fluid Dynamics, Mechanical Industrial, and Aerospace Engineering, Concordia University, QC, Canada.

出版信息

Med Eng Phys. 2020 Sep;83:48-55. doi: 10.1016/j.medengphy.2020.07.014. Epub 2020 Jul 22.

Abstract

Tetralogy of Fallot is the most common cyanotic congenital disease, affecting 10% of children with congenital heart disease. The surgical management of patients with Tetralogy of Fallot leads, however, to significant detrimental effects on the right ventricle including pulmonary valve regurgitation. This experiment aimed to simulate different cases of pulmonary valve regurgitation with varying degrees of severity in order to observe the changes in flow structures present in the right ventricle. Planar time-resolved particle image velocimetry measurements have been performed on a custom-made double activation simulator reproducing flow conditions in a model of a right ventricle. Changes in flow characteristics in the right ventricle have been evaluated in terms of velocity fields and profiles, tricuspid inflow jet orientation and viscous energy dissipation. Our results show that pulmonary valve regurgitation significantly alters the flow in the right ventricle mostly by impairing the diastolic inflow through the tricuspid valve and by increasing viscous energy loss. This fundamental work should allow for a better understanding of such changes in the RV flow dynamics. It may also help in developing new strategies allowing for a better follow-up of patients with repaired TOF and for decision-making in terms of pulmonary valve replacement.

摘要

法洛四联症是最常见的青紫型先天性心脏病,占先天性心脏病患儿的10%。然而,法洛四联症患者的手术治疗会对右心室产生显著的不利影响,包括肺动脉瓣反流。本实验旨在模拟不同严重程度的肺动脉瓣反流病例,以观察右心室内流动结构的变化。在一个定制的双激活模拟器上进行了平面时间分辨粒子图像测速测量,该模拟器再现了右心室模型中的流动条件。已根据速度场和剖面、三尖瓣流入射流方向和粘性能量耗散评估了右心室内流动特性的变化。我们的结果表明,肺动脉瓣反流主要通过损害三尖瓣的舒张期流入并增加粘性能量损失,显著改变右心室内的流动。这项基础工作应有助于更好地理解右心室流动动力学的此类变化。它还可能有助于制定新的策略,以便更好地随访法洛四联症修复患者,并在肺动脉瓣置换方面进行决策。

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