Shanebrook J Richard, Levine Mathew L.
Department of Mechanical Engineering, Union College, Schenectady, New York 12308.
Cardiovasc Dis. 1979 Dec;6(4):425-438.
A flow model for analyzing the fluid mechanics of left ventricular-aortic valved conduits has been established. The model is based on a parallel flow circuit analogy of Ohm's law, the classic analysis of Gorlin and Gorlin(1) for the determination of valvular areas, and an empirical constant, introduced by Gentle,(2) that is descriptive of prosthetic heart valve performance. Favorable comparisons with clinical data indicate that the flow model is capable of predicting volumetric rates of flow through the valved conduit and through the aorta. Applications of the model are discussed in terms of altering the design of the valved conduit to improve its performance. The effect of valvular efficiency on conduit performance is investigated, and it is concluded that the Starr-Edwards ball valve and the Hancock 250 valve offer attractive alternatives if the objective is to increase the volumetric rate of flow through the valved conduit, or to decrease the volumetric rate of flow through the stenotic aortic valve, or both.
已建立了一个用于分析左心室 - 主动脉带瓣管道流体力学的流动模型。该模型基于欧姆定律的平行流路类比、戈林和戈林(1)用于确定瓣膜面积的经典分析,以及由金特尔(2)引入的一个描述人工心脏瓣膜性能的经验常数。与临床数据的良好比较表明,该流动模型能够预测通过带瓣管道和通过主动脉的容积流量率。从改变带瓣管道设计以改善其性能的角度讨论了该模型的应用。研究了瓣膜效率对管道性能的影响,得出的结论是,如果目标是增加通过带瓣管道的容积流量率,或降低通过狭窄主动脉瓣膜的容积流量率,或两者兼顾,那么斯塔尔 - 爱德华兹球瓣和汉考克250瓣提供了有吸引力的选择。