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Transcatheter Heart Valve Implantation in Bicuspid Patients with Self-Expanding Device

机译:经导管心瓣植入双裂患者自膨胀装置

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摘要

Bicuspid aortic valve (BAV) patients are conventionally not treated by transcathether aortic valve implantation (TAVI) because of anatomic constraint with unfavorable outcome. Patient-specific numerical simulation of TAVI in BAV may predict important clinical insights to assess the conformability of the transcathether heart valves (THV) implanted on the aortic root of members of this challenging patient population. We aimed to develop a computational approach and virtually simulate TAVI in a group of n.6 stenotic BAV patients using the self-expanding Evolut Pro THV. Specifically, the structural mechanics were evaluated by a finite-element model to estimate the deformed THV configuration in the oval bicuspid anatomy. Then, a fluid–solid interaction analysis based on the smoothed-particle hydrodynamics (SPH) technique was adopted to quantify the blood-flow patterns as well as the regions at high risk of paravalvular leakage (PVL). Simulations demonstrated a slight asymmetric and elliptical expansion of the THV stent frame in the BAV anatomy. The contact pressure between the luminal aortic root surface and the THV stent frame was determined to quantify the device anchoring force at the level of the aortic annulus and mid-ascending aorta. At late diastole, PVL was found in the gap between the aortic wall and THV stent frame. Though the modeling framework was not validated by clinical data, this study could be considered a further step towards the use of numerical simulations for the assessment of TAVI in BAV, aiming at understanding patients not suitable for device implantation on an anatomic basis.
机译:由于具有不利结果的解剖结构,双苏布化主动脉瓣(BAV)患者通常未被转基状主动脉瓣植入(TAVI)治疗。 BAV中TAVI的患者特异性数值模拟可以预测评估植入该挑战性患者群体成员主动脉根系的转壳心瓣(THV)的重要性临床洞察。我们旨在使用自扩张Evolut Pro THV制定计算方法,几乎​​在一组N.6狭窄BAV患者中模拟Tavi。具体地,通过有限元模型评估结构力学,以估计椭圆形双囊解剖学中的变形的THV构型。然后,采用基于平滑粒子流体动力学(SPH)技术的流体固体相互作用分析来量化血流模式以及高风险的静脉曲张渗漏(PVL)的区域。模拟在BAV解剖学中表明了THV支架框架的轻微不对称和椭圆膨胀。测定腔主动脉根表面和THV支架框架之间的接触压力以在主动脉环和中升主动脉的水平下量化器件锚固力。在后期舒张中,PVL被发现在主动脉壁和THV支架框架之间的间隙中。虽然临床数据未验证建模框架,但该研究可以考虑使用数值模拟的进一步迈出,用于评估BAVI的TAVI,旨在了解不适合于解剖学的患者植入的患者。

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