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圣犹达医疗公司心脏瓣膜假体瓣叶间反流的数值分析。

A numerical analysis of the backflow between the leaflets of a St Jude Medical cardiac valve prosthesis.

作者信息

Reif T H

机构信息

Republic Medical Products, Inc., Milton, FL 32583.

出版信息

J Biomech. 1991;24(8):733-41. doi: 10.1016/0021-9290(91)90337-m.

Abstract

Clinically significant, unexplained hemolysis has been reported to occur in St Jude Medical (SJM) cardiac valve prostheses. The leakage phase of backflow is identified as having the most hemolytic potential, when compared with the other phases of the cardiac cycle. A two-dimensional, laminar, constant fluid property finite element analysis (FEA) is used to calculate the peak shear stress obtained in the flow through the narrow slit formed by the closed leaflets of an idealized size 29 mm (tissue annulus diameter) SJM cardiac valve prosthesis, during the leakage phase of backflow. The flow geometry was such that the simple laminar flow theory (SLFT) could be used to model the flow through the region of peak shear stresses with reasonable accuracy. The SLFT predicts that the maximum shear stress depends upon the thickness of the clearance space and the average velocity through that space. These results suggest that the magnitude of the peak shear stress is of the order of 700-1000 Pa for a duration of the order of 0.5-0.4 ms for pressure drops across the valve of 150-300 torr. This suggests that hemolysis is possible for certain unfortunate combinations of clearances and pressure conditions. However, further research is needed before this flow phenomenon can be associated with the reported clinical hemolysis.

摘要

据报道,圣犹达医疗公司(SJM)的心脏瓣膜假体中会出现具有临床意义的不明原因溶血。与心动周期的其他阶段相比,回流的泄漏阶段被认为具有最大的溶血可能性。采用二维、层流、流体属性恒定的有限元分析(FEA)来计算在理想化尺寸为29毫米(组织瓣环直径)的SJM心脏瓣膜假体关闭瓣叶形成的狭窄缝隙中流动时,在回流泄漏阶段所获得的峰值剪切应力。流动几何形状使得简单层流理论(SLFT)能够以合理的精度对通过峰值剪切应力区域的流动进行建模。SLFT预测最大剪切应力取决于间隙空间的厚度以及通过该空间的平均速度。这些结果表明,对于瓣膜两端压降为150 - 300托的情况,峰值剪切应力的大小约为700 - 1000帕,持续时间约为0.5 - 0.4毫秒。这表明对于某些间隙和压力条件的不幸组合,溶血是可能的。然而,在这种流动现象与所报道的临床溶血相关联之前,还需要进一步的研究。

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