Martin Caitlin, Sun Wei
Tissue Mechanics Laboratory, The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Technology Enterprise Park, Room 206, 387 Technology Circle, Atlanta, GA, 30313-2412, USA.
Ann Biomed Eng. 2017 Feb;45(2):394-404. doi: 10.1007/s10439-016-1738-8. Epub 2016 Oct 12.
Transcatheter aortic valve (TAV) implantation within a failed bioprosthetic valve is a growing trend for high-risk patients. The non-compliant stent of the previous prosthesis may prevent full expansion of the TAV, which has been shown to distort the leaflet configuration, and has been hypothesized to adversely affect durability. In this study, TAV leaflet fatigue damage under cyclic pressurization in the setting of stent underexpansion by 0 (fully expanded), 1, 2 and 3 mm was simulated using finite element analysis to test this hypothesis. In the 2 and 3 mm underexpanded devices, the TAV leaflets exhibited severe pin-wheeling during valve closure, which increased leaflet stresses dramatically, and resulted in accelerated fatigue damage of the leaflets. The leaflet fatigue damage in the 1 mm underexpanded case was similar to that in the fully expanded case. Clinically a range of 10-15% underexpansion is generally considered acceptable; however, it was observed in this study that ≥2 mm (≥9.1%) underexpansion, will significantly impact device durability. Further study is necessary to determine the impact of various deployment conditions, i.e. non-uniform and non-circular deployments and different implantation heights, on differing TAV devices, but it is clear that the normal TAV leaflet configuration must be preserved in order to preserve durability.
对于高危患者而言,在失效的生物瓣膜内进行经导管主动脉瓣(TAV)植入是一种日益增长的趋势。先前瓣膜的非顺应性支架可能会阻碍TAV的完全展开,这已被证明会扭曲瓣叶结构,并被推测会对耐久性产生不利影响。在本研究中,使用有限元分析模拟了在支架扩张不足0(完全展开)、1、2和3毫米的情况下,循环加压时TAV瓣叶的疲劳损伤,以验证这一假设。在扩张不足2毫米和3毫米的装置中,TAV瓣叶在瓣膜关闭期间表现出严重的风车样运动,这显著增加了瓣叶应力,并导致瓣叶加速疲劳损伤。扩张不足1毫米的情况下瓣叶的疲劳损伤与完全展开情况下相似。临床上,通常认为10%-15%的扩张不足范围是可接受的;然而,本研究观察到,扩张不足≥2毫米(≥9.1%)会显著影响装置的耐久性。有必要进一步研究各种展开条件,即不均匀和非圆形展开以及不同的植入高度,对不同TAV装置的影响,但很明显,必须保持正常的TAV瓣叶结构以维持耐久性。