Kitajima Hiroumi D, Sundareswaran Kartik S, Teisseyre Thomas Z, Astary Garrett W, Parks W James, Skrinjar Oskar, Oshinski John N, Yoganathan Ajit P
Cardiovascular Fluid Mechanics Laboratory, Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology, U. A. Whitaker Building, 313 Ferst Drive, Atlanta, GA 30332-0535, USA.
J Biomech Eng. 2008 Aug;130(4):041004. doi: 10.1115/1.2900725.
Particle image velocimetry (PIV) and phase contrast magnetic resonance imaging (PC-MRI) have not been compared in complex biofluid environments. Such analysis is particularly useful to investigate flow structures in the correction of single ventricle congenital heart defects, where fluid dynamic efficiency is essential. A stereolithographic replica of an extracardiac total cavopulmonary connection (TCPC) is studied using PIV and PC-MRI in a steady flow loop. Volumetric two-component PIV is compared to volumetric three-component PC-MRI at various flow conditions. Similar flow structures are observed in both PIV and PC-MRI, where smooth flow dominates the extracardiac TCPC, and superior vena cava flow is preferential to the right pulmonary artery, while inferior vena cava flow is preferential to the left pulmonary artery. Where three-component velocity is available in PC-MRI studies, some helical flow in the extracardiac TCPC is observed. Vessel cross sections provide an effective means of validation for both experiments, and velocity magnitudes are of the same order. The results highlight similarities to validate flow in a complex patient-specific extracardiac TCPC. Additional information obtained by velocity in three components further describes the complexity of the flow in anatomic structures.
粒子图像测速技术(PIV)和相位对比磁共振成像(PC-MRI)尚未在复杂生物流体环境中进行比较。这种分析对于研究单心室先天性心脏缺陷矫正中的流动结构特别有用,在这种情况下流体动力学效率至关重要。在稳定流动回路中,使用PIV和PC-MRI对心外全腔静脉肺动脉连接(TCPC)的立体光刻复制品进行了研究。在各种流动条件下,将体积二分量PIV与体积三分量PC-MRI进行了比较。在PIV和PC-MRI中均观察到相似的流动结构,在心外TCPC中平稳流动占主导,上腔静脉血流优先流向右肺动脉,而下腔静脉血流优先流向左肺动脉。在PC-MRI研究中可获得三分量速度的地方,在心外TCPC中观察到一些螺旋流。血管横截面为两个实验提供了有效的验证手段,速度大小处于同一量级。结果突出了在复杂的患者特异性心外TCPC中验证血流的相似性。通过三分量速度获得的额外信息进一步描述了解剖结构中血流的复杂性。