Thubrikar M, Piepgrass W C, Deck J D, Nolan S P
Ann Thorac Surg. 1980 Sep;30(3):230-9. doi: 10.1016/s0003-4975(10)61250-7.
During normal function of the aortic valve, the aortic leaflets undergo not only cyclic loading and unloading but also cyclic reversal of their curvature. The stresses induced in the leaflet due to these variations have been computed using a new concept based on the structure of the leaflet. Membrane stresses have been related to the pressure difference across the leaflet and bending stresses to the leaflet curvature. Total stresses were obtained by adding the two stresses. Total stresses in bioprosthetic and synthetic leaflets also were computed using the same approach. In systole, the natural leaflet is subjected to much lower total stress than a bioprosthetic or a synthetic leaflet. The natural leaflet is not subjected to compressive stresses during the cardiac cycle, whereas bioprosthetic and synthetic leaflets must sustain compressive stresses during systole. The differences in stress patterns of these leaflets indicate that there is a difference in their longevity.
在主动脉瓣的正常功能过程中,主动脉瓣叶不仅承受周期性的加载和卸载,而且其曲率也会发生周期性反转。基于瓣叶结构的新概念,计算了由于这些变化在瓣叶中产生的应力。膜应力与瓣叶两侧的压差相关,弯曲应力与瓣叶曲率相关。通过将这两种应力相加得到总应力。生物人工瓣叶和合成瓣叶中的总应力也采用相同方法计算。在收缩期,天然瓣叶承受的总应力远低于生物人工瓣叶或合成瓣叶。在心动周期中,天然瓣叶不会受到压缩应力,而生物人工瓣叶和合成瓣叶在收缩期必须承受压缩应力。这些瓣叶应力模式的差异表明它们在寿命方面存在差异。