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首页> 外文期刊>Journal of Artificial Organs >Influence of three mechanical bileaflet prosthetic valve designs on the three-dimensional flow field inside a simulated aorta
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Influence of three mechanical bileaflet prosthetic valve designs on the three-dimensional flow field inside a simulated aorta

机译:三种机械性双叶人工瓣膜设计对模拟主动脉内部三维流场的影响

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The current design of the bileaflet valve, the leaflets of which open outside first, differs significantly from the natural valve whose leaflets open center first. This difference generates a completely different flow field in the bileaflet valve compared to that in the natural heart valve. In a previous study, it was demonstrated that the valve design greatly affects the aortic flow field as well as the circulatory flow inside sinuses of Valsalva, using saline solution as a working fluid. A limited discussion on the turbulence flow field that could be generated by the valve was provided. In this continuation of that study, therefore, a dynamic PIV study was conducted to analyze the influence of the heart valve design on the aortic flow field, and particularly on the turbulent profile. This study also aimed to determine the influence of the viscosity of the testing fluid. Three bileaflet prostheses—the St. Jude Medical (SJM), the On-X, and the MIRA valves—were tested under pulsatile flow conditions. Flow through the central orifice of the SJM valve was slower than that through the newer designs. The newer designs tend to show strong flow through all orifices. The On-X valve generates simple jet-type flow while the MIRA valve with circumferentially curved leaflets generates a strong but three-dimensionally diffuse flow, resulting in a more complex flow field downstream of the aortic valve with higher turbulence. A 180° orientation that is more popular clinically seems to provide a less diffuse flow than a 90° orientation. The effect of increasing the viscosity was found to be an increase in the flow velocity through the central orifice and a more organized flow field for all of the valves tested.
机译:双叶瓣的当前设计,其瓣叶首先向外打开,与自然瓣膜的自然瓣膜不同,后者的瓣叶首先向中心打开。与自然心脏瓣膜相比,这种差异在双叶瓣膜中产生了完全不同的流场。在先前的研究中,已证明使用盐溶液作为工作液,瓣膜设计会极大地影响主动脉流场以及Valsalva鼻窦内部的循环血流。提供了关于阀可能产生的湍流场的有限讨论。因此,在该研究的继续中,进行了动态PIV研究,以分析心脏瓣膜设计对主动脉流场,尤其是对湍流轮廓的影响。这项研究还旨在确定测试液粘度的影响。在脉动流条件下测试了三种双叶假体,即St. Jude Medical(SJM),On-X和MIRA瓣膜。通过SJM阀的中心孔的流速比通过新设计的流速慢。较新的设计倾向于在所有孔中显示出强劲的流动性。 On-X瓣膜产生简单的喷射流,而具有圆周弯曲小叶的MIRA瓣膜产生强而三维的扩散流,从而导致主动脉瓣膜下游的流场更加复杂,湍流度更高。在临床上更流行的180°方向似乎比90°方向提供较少的扩散流。发现增加粘度的影响是通过中心孔的流速增加,并且对于所有测试的阀来说,流场的组织更加有条理。

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