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首页> 外文期刊>ASAIO journal >A biocompatible flow chamber to study the hemodynamic performance of prosthetic heart valves
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A biocompatible flow chamber to study the hemodynamic performance of prosthetic heart valves

机译:生物相容性流动室,用于研究人工心脏瓣膜的血液动力学性能

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摘要

The goal of this study was to design, fabricate, and characterize a biocompatible flow chamber to study the performance of artificial heart valves. The system consists of a testing fluid chamber and a water chamber (separated by a latex diaphragm), following the design of a left ventricular assist device. Two St. Jude bileaflet mechanical heart valves were placed oppositely in the testing fluid chamber to control flow direction. The flow rate of the testing fluid chamber was set at 5.6 L/min, with a stroke volume of 80 ml. The performance of the system was examined through three-dimensional numerical simulation and in vitro experiments with whole blood and washed platelets. Hemolysis was measured with whole blood using a spectrophotometer. Platelet activation was measured by platelet surface P-selectin expression using flow cytometry. The three-dimensional computational fluid dynamics model demonstrated that the flow field in the chamber was laminar and physiological. Results from in vitro experiments indicated that the flow conditions in the chamber did not induce hemolysis or platelet activation with the presence of St. Jude heart valves. Overall, the flow chamber can provide a feasible environment to study the hemodynamic performance of artificial heart valves.
机译:这项研究的目的是设计,制造和表征生物相容性流通腔,以研究人造心脏瓣膜的性能。按照左心室辅助装置的设计,该系统由测试液室和水室(由乳胶膜分隔)组成。将两个St. Jude双叶机械心脏瓣膜相对放置在测试液室中,以控制流向。测试流体腔室的流量设置为5.6 L / min,冲程容积为80 ml。通过三维数值模拟和全血和冲洗血小板的体外实验,检查了系统的性能。使用分光光度计用全血测量溶血。使用流式细胞术通过血小板表面P-选择蛋白表达来测量血小板活化。三维计算流体动力学模型表明,腔室内的流场是层流且具有生理性。体外实验的结果表明,在St. Jude心脏瓣膜存在的情况下,腔室内的流动条件不会引起溶血或血小板活化。总的来说,流动腔可以为研究人造心脏瓣膜的血液动力学性能提供一个可行的环境。

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