Shu Mark C S, Gross Jeffery M, O'Rourke Keith K, Yoganathan Ajit P
Medtronic Heart Valves, Inc., Santa Ana, CA 92705, USA.
J Heart Valve Dis. 2003 Jul;12(4):503-12.
An integrated macro/micro approach was used to evaluate flow within the pivots of the Medtronic ADVANTAGE bileaflet heart valve. Results were compared with those obtained with the St. Jude Medical bileaflet heart valve.
The integrated macro/micro approach consists of both a macroscopic hydrodynamic performance assessment and a three-part microscopic flow analysis. The hydrodynamic performance assesses the basic dynamic functions of the valves, while the microscopic flow analysis uses pivot flow visualization, computational fluid dynamics and laser Doppler velocimetry to determine pivot flow characteristics. Pivot flow visualization captures two-dimensional images of the pivot flow, defines the computational fluid dynamics boundary conditions, and validates the computational result. Three-dimensional unsteady computational fluid dynamics simulation reconstructs pivot flow structures. Laser Doppler velocimetry maps pivot velocity field and provides velocity validation for the computational simulation.
The macroscopic hydrodynamic performance assessment showed the ADVANTAGE and St. Jude Medical valves to be comparable under identical flow conditions. The three techniques in the microscopic analysis mutually confirmed that the pivot design of the ADVANTAGE valve permits continuous-flow washing in the pivot recess, the pivots of both valves are completely wiped twice in a cardiac cycle, and no persistent pivot flow stases are observed.
The integrated macro/micro approach represents a powerful systematic method for determining detailed microscopic flow structures inside the pivots of bileaflet mechanical valves. The use of this technique during the design process of a bileaflet valve can eliminate the persistent flow stases that lead to thrombus formation.
采用宏观/微观综合方法评估美敦力ADVANTAGE双叶心脏瓣膜枢轴内的血流情况。将结果与圣犹达医疗双叶心脏瓣膜的结果进行比较。
宏观/微观综合方法包括宏观流体动力学性能评估和三部分微观血流分析。流体动力学性能评估瓣膜的基本动态功能,而微观血流分析则使用枢轴血流可视化、计算流体动力学和激光多普勒测速法来确定枢轴血流特征。枢轴血流可视化捕获枢轴血流的二维图像,定义计算流体动力学边界条件,并验证计算结果。三维非定常计算流体动力学模拟重建枢轴血流结构。激光多普勒测速法绘制枢轴速度场图,并为计算模拟提供速度验证。
宏观流体动力学性能评估表明,在相同血流条件下,ADVANTAGE瓣膜和圣犹达医疗瓣膜具有可比性。微观分析中的三种技术相互证实,ADVANTAGE瓣膜的枢轴设计允许在枢轴凹槽中进行连续血流冲洗,两个瓣膜的枢轴在心动周期中完全被冲洗两次,且未观察到持续的枢轴血流淤滞。
宏观/微观综合方法是一种强大的系统方法,可用于确定双叶机械瓣膜枢轴内详细的微观血流结构。在双叶瓣膜设计过程中使用该技术可消除导致血栓形成的持续血流淤滞。