The Human Performance Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.
Med Eng Phys. 2011 Mar;33(2):131-47. doi: 10.1016/j.medengphy.2010.09.017. Epub 2010 Oct 23.
Although heart valve replacement is among the most common cardiovascular surgical procedures, their outcome is often difficult to predict. One of the reasons is the design and choice of the materials used for the fabrication of the prostheses. This review paper describes the use of modeling techniques in prosthetic heart valve (HV) design and aims at the justification and development of a polymer based trileaflet mechanical heart valve (MHV). The closing/opening phase behavior of the bileaflet MHV was investigated. The potential problem of valve failure due to crack propagation in the brittle pyrolytic carbon leaflet was also discussed. These studies suggest that although bileaflet MHV performs satisfactorily, there are justifications for improvement. Since the native aortic HV is trileaflet and made of anisotropic and hyperelastic tissue, one possible approach to a better MHV design is based on our ability to closely mimic the natural geometry and biomaterial properties.
虽然心脏瓣膜置换术是最常见的心血管外科手术之一,但手术结果往往难以预测。原因之一是假体制造中所使用的设计和材料选择。本文综述了建模技术在人工心脏瓣膜(HV)设计中的应用,并旨在论证和开发基于聚合物的三叶机械心脏瓣膜(MHV)。研究了双叶瓣 MHV 的关闭/开启阶段行为,并讨论了由于在易碎的热解碳瓣叶中发生裂纹扩展而导致瓣膜失效的潜在问题。这些研究表明,尽管双叶瓣 MHV 的性能令人满意,但仍有改进的理由。由于天然主动脉 HV 是三叶瓣,由各向异性和超弹性组织制成,因此,一种更好的 MHV 设计方法是基于我们能够紧密模仿天然几何形状和生物材料特性的能力。