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首页> 外文期刊>ASAIO journal >Toward optimization of a novel trileaflet polymeric prosthetic heart valve via device thrombogenicity emulation
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Toward optimization of a novel trileaflet polymeric prosthetic heart valve via device thrombogenicity emulation

机译:通过设备血栓形成仿真来优化新型三叶聚合物人工心脏瓣膜

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Aortic stenosis is the most prevalent and life-threatening form of valvular heart disease. It is primarily treated via open-heart surgical valve replacement with either a tissue or a mechanical prosthetic heart valve (PHV), each prone to degradation and thrombosis, respectively. Polymeric PHVs may be optimized to eliminate these complications, and they may be more suitable for the new transcatheter aortic valve replacement procedure and in devices like the total artificial heart. However, the development of polymer PHVs has been hampered by persistent in vivo calcification, degradation, and thrombosis. To address these issues, we have developed a novel surgically implantable polymer PHV composed of a new thermoset polyolefin called cross-linked poly(styrene-block-isobutylene-block-styrene), or xSIBS, in which key parameters were optimized for superior functionality via our device thrombogenicity emulation methodology. In this parametric study, we compared our homogeneous optimized polcymer PHV to a prior composite polymer PHV and to a benchmark tissue valve. Our results show significantly improved hemodynamics and reduced thrombogenicity in the optimized polymer PHV compared to the other valves. These results indicate that our new design may not require anticoagulants and may be more durable than its predecessor, and validate the improvement, toward optimization, of this novel polymeric PHV design.
机译:主动脉瓣狭窄是瓣膜性心脏病最普遍和威胁生命的形式。它主要通过用组织或人工心脏瓣膜(PHV)进行的心脏直视手术瓣膜置换来治疗,每种瓣膜均容易降解和血栓形成。聚合PHV可以进行优化以消除这些并发症,并且它们可能更适合于新的经导管主动脉瓣置换程序以及诸如人造心脏之类的设备。然而,聚合物PHV的发展已受到持续的体内钙化,降解和血栓形成的阻碍。为了解决这些问题,我们开发了一种新型的可手术植入的聚合物PHV,该聚合物由一种新型的热固性聚烯烃(称为交联聚(苯乙烯-嵌段-异丁烯-嵌段-苯乙烯)或xSIBS)组成,其中关键参数经过优化,可通过我们的设备血栓形成仿真方法。在这项参数研究中,我们将均质的优化多聚体PHV与先前的复合聚合物PHV和基准组织瓣膜进行了比较。我们的结果表明,与其他阀门相比,优化后的聚合物PHV的血液动力学显着改善,血栓形成减少。这些结果表明,我们的新设计可能不需要抗凝剂,并且可能比其前任产品更耐用,并且验证了这种新颖的聚合物PHV设计朝着最优化的方向发展。

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