Chandran K B, Schoephoerster R, Dellsperger K C
Department of Biomedical, University of Iowa, Iowa City.
J Biomech. 1989;22(1):51-65. doi: 10.1016/0021-9290(89)90184-x.
Pulsatile flow dynamics through bileaflet (St Jude and Duromedics), tilting disc (Bjork-Shiley and Omniscience), caged ball (Starr-Edwards), pericardial (Edwards) and porcine (Carpentier-Edwards) mitral valves in a model human left ventricle (LV) were studied. The model human ventricle, obtained from an in situ diastolic casting, was incorporated into a mock circulatory system. Measurements were made at various heart rates and flow rates. These included the transvalvular pressure drop and regurgitation in percent and cm3 beat-1. The effect of valve geometry and the orientation of the valve with respect to the valve annulus was analyzed using a flow visualization technique. Qualitative flow visualization study indicates certain preferred orientations for the tilting disc and bileaflet valve prostheses in order to obtain a smooth washout of flow in the LV chamber.
研究了在模拟人体左心室(LV)中,通过双叶瓣(圣犹达瓣和杜罗美迪克瓣)、倾斜盘瓣(比约克-希利瓣和全知瓣)、笼球瓣(斯塔尔-爱德华兹瓣)、心包瓣(爱德华兹瓣)和猪瓣(卡朋蒂埃-爱德华兹瓣)的脉动血流动力学。从原位舒张铸型获得的模拟人体心室被纳入模拟循环系统。在不同心率和流速下进行测量。这些测量包括跨瓣压差以及反流的百分比和每搏立方厘米数。使用流动可视化技术分析了瓣膜几何形状以及瓣膜相对于瓣环的方向的影响。定性流动可视化研究表明,倾斜盘瓣和双叶瓣人工瓣膜存在某些优选方向,以便在左心室腔中实现血流的平稳清除。