Black M M, Hose D R, Lamb C J, Lawford P V, Ralph S J
Department of Medical Physics and Clinical Engineering, University of Sheffield.
J Heart Valve Dis. 1994 Mar;3(2):212-5.
The design of artificial heart valves has traditionally been based on the development of a prototype device which was then subjected to extensive laboratory testing in order to confirm its suitability for clinical use. In the past the in vitro assessment of a valve's performance was based principally on the measurement of parameters such as pressure difference, regurgitation and, more recently, energy losses. Such measurements can be defined as being at the 'macro' level and rarely show any clinically significant differences amongst currently available prostheses. The analytical approach to flow through heart valves has previously been hampered by difficulties experienced in solving the relevant equations of flow particularly in the case of pulsatile conditions. Computational techniques are now available which enable appropriate solutions to be obtained for these problems and consequently provide an opportunity for detailed examination of the 'micro' level of flow disturbances exhibited by the different valves. This present preliminary study is designed to illustrate the use of such an analytical approach to the flow through prosthetic valves. A single topic has been selected for this purpose which is the comparative value of steady versus pulsatile flow testing. A bileaflet valve was chosen for the analysis and a mathematical model of this valve in the aortic position of the Sheffield Pulse Duplicator was created. The theoretical analysis was carried out using a commercially available Computational Fluid Dynamics package, namely, FIDAP, on a SUN MICROSYSTEMS 10-30 workstation.(ABSTRACT TRUNCATED AT 250 WORDS)
传统上,人工心脏瓣膜的设计基于原型设备的研发,随后该设备要经过广泛的实验室测试,以确认其临床适用性。过去,瓣膜性能的体外评估主要基于诸如压差、反流以及最近的能量损失等参数的测量。这些测量可被定义为“宏观”层面的测量,目前市面上的假体之间很少显示出任何具有临床意义的差异。此前,由于求解相关流动方程存在困难,尤其是在脉动条件下,心脏瓣膜流动的分析方法受到了阻碍。现在有了计算技术,能够针对这些问题获得合适的解决方案,从而为详细研究不同瓣膜所表现出的“微观”层面的流动干扰提供了机会。本初步研究旨在说明这种分析方法在人工瓣膜流动研究中的应用。为此选择了一个单一主题,即稳态与脉动流测试的比较价值。分析选用了一个双叶瓣膜,并在谢菲尔德脉动复制器的主动脉位置创建了该瓣膜的数学模型。理论分析是在SUN MICROSYSTEMS 10 - 30工作站上使用商用计算流体动力学软件包FIDAP进行的。(摘要截选至250字)