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CAD Modeling for Evaluating LVOT Obstruction in Transcatheter Mitral Valve Replacement

机译:用于评估经截面二尖瓣置换术中LVOT障碍的CAD模拟

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The current generation of transcatheter heart valves (THV), as the Edwards SAPIEN 3 Ultra (S3), is not specifically designed for mitral position implantation and has intrinsic design geometry that may make mitral implantation suboptimal. This study aimed to develop a computed-tomography (CT) based CAD workflow for the preoperative planning of transcatheter mitral valve replacement (TMVR) by evaluating the resulting obstruction in the left ventricular outflow tract (LVOT). Specifically, the computational framework to reconstruct heart anatomy and virtually deploy the THV into mitral valve annulus was developed and successively applied to the cases of two patients who experienced annuloplasty ring failure. Planimetric assessment of the cross-sectional area of the neo-LVOT was quantified at different anatomic levels of implanted THV. Findings revealed the importance of the proposed CAD modeling workflow to enable more informative pre-operative assessments of the risk related to the development of the neo-LVOT obstruction and even to guide the Heart Team regarding device selection, sizing and intended positioning for TMVR.
机译:当前一代导管心脏瓣膜(THV)的,作为爱德华兹SAPIEN 3超(S3),而不是专门针对二尖瓣位置植入设计,并具有固有的设计几何结构可以使二尖瓣植入次优的。本研究旨在通过评估左心室流出道(LVOT)所产生的阻碍开发计算机断层扫描(CT)对经导管二尖瓣置换术(TMVR)的术前设计基于CAD的工作流程。具体而言,重建心脏解剖和虚拟部署THV到二尖瓣环的计算框架的开发和陆续应用到谁经历成形环故障两例病例。在新左室流出道的截面积的地上物的评估在植入THV不同的解剖层次进行定量。调查结果显示所提出的CAD建模工作流程的重要性,以使有关新LVOT梗阻的发展风险的更多信息的术前评估,甚至引导心小组关于设备的选择,大小和预期定位为TMVR。

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