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在逼真的主动脉根部模拟自膨胀经导管主动脉瓣:展开几何形状对瓣叶变形的影响。

Simulation of self expanding transcatheter aortic valve in a realistic aortic root: implications of deployment geometry on leaflet deformation.

作者信息

Gunning Paul S, Vaughan Ted J, McNamara Laoise M

机构信息

Biomechanics Research Centre (BMEC), Department of Biomedical Engineering, National University of Ireland Galway, Galway, Ireland.

出版信息

Ann Biomed Eng. 2014 Sep;42(9):1989-2001. doi: 10.1007/s10439-014-1051-3. Epub 2014 Jun 10.

Abstract

Self expanding Transcatheter Aortic Valve Replacements (TAVR) can conform to the geometry of the aortic annulus and the calcified leaflet complex, which may result in leaflet distortion and altered leaflet kinematics, but such changes have not yet been characterized. In this study we developed a computational model to investigate the deployment of a self expanding TAVR in a realistic aortic root model derived from multi-slice computed tomography (MSCT) images. We simulated TAVR crimping/deployment in realistic and idealized aortic root models, followed by diastolic loading of the TAVR leaflets in its final deployed configuration. The TAVR deployed in a realistic aortic root had increased peak loading in the commissural region of the leaflets compared to TAVRs under idealized circular deployment conditions (2.97 vs. 1.52 MPa). Furthermore, orientation of the TAVR in the asymmetric aortic annulus such that the commissures of the TAVR are aligned with the native valve commissures minimized the effect of TAVR stent distortion on peak stresses in the TAVR leaflets (2.97 vs. 2.35 MPa). We propose that preoperative planning of the orientation of the TAVR in the aortic root annulus might minimize the impact of potential stent distortion on leaflet function and may in turn increase long term leaflet durability.

摘要

自膨胀式经导管主动脉瓣置换术(TAVR)可顺应主动脉瓣环和钙化瓣叶复合体的几何形状,这可能导致瓣叶变形和瓣叶运动学改变,但此类变化尚未得到描述。在本研究中,我们开发了一种计算模型,以研究自膨胀式TAVR在源自多层计算机断层扫描(MSCT)图像的真实主动脉根部模型中的展开情况。我们在真实和理想化的主动脉根部模型中模拟了TAVR的压接/展开,随后在其最终展开构型下对TAVR瓣叶进行舒张期加载。与在理想化圆形展开条件下的TAVR相比,在真实主动脉根部展开的TAVR在瓣叶连合区域的峰值负荷增加(2.97对1.52兆帕)。此外,将TAVR在不对称主动脉瓣环中的方向调整为使TAVR的连合与天然瓣膜连合对齐,可将TAVR支架变形对TAVR瓣叶峰值应力的影响降至最低(2.97对2.35兆帕)。我们提出,术前规划TAVR在主动脉根部瓣环中的方向可能会将潜在支架变形对瓣叶功能的影响降至最低,进而可能提高瓣叶的长期耐久性。

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