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COMPUTATIONAL SIMULATIONS OF VENTRICULAR OUTFLOW TRACT OBSTRUCTIONS ASSOCIATED WITH VARIED REPLACEMENT VALVE GEOMETRIES

机译:与各种更换阀几何形状相关的心室流出道障碍物的计算模拟

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Transcatheter replacement therapies for the atrioventricular (AV) valves are considered as the next frontier for the treatment of valvular regurgitation. The AV valves, tricuspid and mitral, are the regulators of blood flow from the atria into the ventricles. During diastole, blood flows through the open tricuspid and mitral valves to fill the right and left ventricles, respectively. During systole, the ventricles contract, closing the AV valves, and forcing the blood to exit through their respective ventricular outflow tracts (VOTs) to the arterial circulations. Although the current gold standard for the treatment of valvular regurgitation is surgical replacement or repair, the field of transcatheter therapies is rapidly expanding as new treatment options for patients; especially for those individuals considered to be at greater risks for surgical complications. Market released bioprosthetic devices for replacing the aortic and pulmonary valves have shown great promise and success. However, the advancement of similar therapies for either the mitral and tricuspid valves remain in the early stages of development. This slower progress is attributed to the high complexities and variabilities of the AV valves, which present challenges for both device design and post-implantation functions.
机译:用于房室(AV)阀门的经导管替换疗法被认为是用于治疗瓣膜反流的下一个前沿。 AV阀门,三尖瓣和二尖瓣是从阿里亚进入心室的血流调节因素。在肺渗透道期间,血液流过打开的三尖瓣和二尖瓣,分别填充右侧和左心室。在收缩期期间,脑室收缩,关闭AV阀门,并强制血液通过其各自的心室流出束(VOT)向动脉循环出口。虽然目前用于治疗瓣膜反流的金标准是手术替代或修复,但经导管疗法的领域迅速扩展,因为患者的新治疗方案;特别是对于那些被认为是手术并发症的风险更大的人。市场发布了用于更换主动脉和肺阀的生物假体装置,表现出了很大的承诺和成功。然而,前提是二尖瓣和三尖瓣类似疗法的进步仍然处于开发的早期阶段。这种较慢的进展归因于AV阀的高复杂性和变形性,这对设备设计和植入后功能呈现出挑战。

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