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Fontan术后单心室患者运动期间的非线性功率损失:来自计算流体动力学的见解

Nonlinear power loss during exercise in single-ventricle patients after the Fontan: insights from computational fluid dynamics.

作者信息

Whitehead Kevin K, Pekkan Kerem, Kitajima Hiroumi D, Paridon Stephen M, Yoganathan Ajit P, Fogel Mark A

机构信息

Children's Hospital of Philadelphia, Division of Cardiology, Main Hospital, 2 Floor, 34 and Civic Center Blvd, Philadelphia, PA 19104, USA.

出版信息

Circulation. 2007 Sep 11;116(11 Suppl):I165-71. doi: 10.1161/CIRCULATIONAHA.106.680827.

Abstract

BACKGROUND

We previously demonstrated that power loss (PL) through the total cavopulmonary connection (TCPC) in single-ventricle patients undergoing Fontan can be calculated by computational fluid dynamic analysis using 3-dimensional MRI anatomic reconstructions. PL through the TCPC may play a role in single-ventricle physiology and is a function of cardiac output. We hypothesized that PL through the TCPC increases significantly under exercise flow conditions.

METHODS AND RESULTS

MRI data of 10 patients with a TCPC were analyzed to obtain 3-dimensional geometry and flow rates through the superior vena cava, inferior vena cava, left pulmonary artery, and right pulmonary artery. Steady computational fluid dynamic simulations were performed at baseline conditions using MRI-derived flows. Simulated exercise conditions of twice (2x) and three times (3x) baseline flow were performed by increasing inferior vena cava flow. PL, head loss, and effective resistance through the TCPC were calculated for each condition. Each condition was repeated at left pulmonary artery/right pulmonary artery ratios of 30/70 and 70/30 to determine the effects of pulmonary flow splits on exercise PL. For each patient, PL increases dramatically in a nonlinear fashion with increasing cardiac output, even when normalized to calculate head loss or resistance. Flow splits had a significant effect on PL at exercise, with most geometries favoring right pulmonary artery flow.

CONCLUSIONS

The relationship between cardiac output and PL is nonlinear and highly dependent on TCPC geometry and pulmonary flow splits. This study demonstrates the importance of studying the TCPC under exercise conditions, because baseline conditions may not adequately characterize TCPC efficiency.

摘要

背景

我们之前证明,对于接受Fontan手术的单心室患者,通过三维MRI解剖重建利用计算流体动力学分析可以计算出经全腔静脉肺动脉连接(TCPC)的功率损失(PL)。经TCPC的PL可能在单心室生理学中起作用,并且是心输出量的函数。我们假设在运动血流条件下,经TCPC的PL会显著增加。

方法和结果

分析了10例患有TCPC的患者的MRI数据,以获得通过上腔静脉、下腔静脉、左肺动脉和右肺动脉的三维几何形状和流速。在基线条件下使用MRI得出的血流进行稳态计算流体动力学模拟。通过增加下腔静脉血流来模拟两倍(2x)和三倍(3x)基线血流的运动条件。计算每种条件下经TCPC的PL、水头损失和有效阻力。每种条件在左肺动脉/右肺动脉比例为30/70和70/30时重复进行,以确定肺血流分流对运动PL的影响。对于每位患者,即使进行归一化以计算水头损失或阻力,PL也会随着心输出量的增加以非线性方式显著增加。血流分流在运动时对PL有显著影响,大多数几何形状有利于右肺动脉血流。

结论

心输出量与PL之间的关系是非线性的,并且高度依赖于TCPC的几何形状和肺血流分流。本研究证明了在运动条件下研究TCPC的重要性,因为基线条件可能无法充分表征TCPC的效率。

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