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Simulation Based Design and Evaluation of a Transcatheter Mitral Heart Valve Frame

机译:经导管二尖瓣心脏瓣膜框架的基于仿真的设计和评估

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摘要

In certain populations, open heart surgery to replace a diseased mitral valve is not an option, leaving percutaneous delivery a viable alternative. However, a surgical transcatheter based delivery of a metallic support frame incorporating a tissue derived valve puts considerable constraints on device specifications. Expansion to a large diameter from the catheter diameter without mechanical fracture involves advanced device design and appropriate material processing and selection. In this study, a new frame concept is presented with a desirable feature that incorporates wings that protrude during expansion to establish adequate fixation. Expansion characteristics of the design in relation to annulus fixation were quantified through finite element analysis predictions of the frame wing span and angles. Computational modeling and simulation was used to identify many favorable design features for the transcatheter mitral valve frame and obtain desired expansion diameters (35–45mm), acceptable radial stiffness (2.7N/mm), and ensure limited risk of failure based on predicted plastic deformations.
机译:在某些人群中,不能选择进行心脏直视手术来替代病变的二尖瓣,因此,经皮分娩是可行的选择。然而,基于外科经导管的结合有组织衍生的瓣膜的金属支撑框架的输送对装置规格提出了相当大的限制。从导管直径扩展到大直径而没有机械断裂需要先进的设备设计以及适当的材料加工和选择。在这项研究中,提出了一种具有理想功能的新框架概念,该概念结合了在扩张过程中伸出以建立足够固定的机翼。通过框架翼展和角度的有限元分析预测,量化了与环固定相关的设计扩展特性。计算建模和模拟用于确定经导管二尖瓣框架的许多有利设计特征,并获得所需的扩张直径(35–45mm),可接受的径向刚度(2.7N / mm),并根据预测的塑性变形确保有限的失效风险。

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