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Tricuspid valve leaflet strains in the beating ovine heart

机译:Tricuspid阀门传单在腹部心脏中的菌株

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The tricuspid leaflets coapt during systole to facilitate proper valve function and, thus, ensure efficient transport of deoxygenated blood to the lungs. Between their open state and closed state, the leaflets undergo large deformations. Quantification of these deformations is important for our basic scientific understanding of tricuspid valve function and for diagnostic or prognostic purposes. To date, tricuspid valve leaflet strains have never been directly quantified in vivo. To fill this gap in our knowledge, we implanted four sonomicrometry crystals per tricuspid leaflet and six crystals along the tricuspid annulus in a total of five sheep. In the beating ovine hearts, we recorded crystal coordinates alongside hemodynamic data. Once recorded, we used a finite strain kinematic framework to compute the temporal evolutions of area strain, radial strain, and circumferential strain for each leaflet. We found that leaflet strains were larger in the anterior leaflet than the posterior and septal leaflets. Additionally, we found that radial strains were larger than circumferential strains. Area strains were as large as 97% in the anterior leaflet, 31% in the posterior leaflet, and 31% in the septal leaflet. These data suggest that tricuspid valve leaflet strains are significantly larger than those in the mitral valve. Should our findings be confirmed they could suggest either that the mechanobiological equilibrium of tricuspid valve resident cells is different than that of mitral valve resident cells or that the mechanotransductive apparatus between the two varies. Either phenomenon may have important implications for the development of tricuspid valve-specific surgical techniques and medical devices.
机译:在Systole期间的三尖瓣叶凝练,以促进适当的阀门功能,从而确保将脱氧血液的有效运输到肺部。在它们的开放状态和闭合状态之间,传单进行大变形。这些变形的量化对于我们对三尖瓣功能和诊断或预后目的的基本科学了解是重要的。迄今为止,三尖瓣瓣叶子株从未在体内直接定量过。为了填补我们的知识,我们植入每分钟瓣叶片的四个姿态晶状体,沿三角瓣环沿三角瓣环植入,总共五只绵羊。在跳跃的绵羊心中,我们录制了晶体动力学数据的晶体坐标。一旦记录,我们使用了一个有限的应变运动框架来计算每个传单的区域应变,径向应变和周向应变的时间演变。我们发现,比后叶和隔膜小叶在前叶片中均较大。另外,我们发现径向菌株大于周向菌株。面积菌株在前叶片中大约97%,后叶片31%,在隔板上的31%,在隔板上的31%。这些数据表明,三尖瓣瓣叶菌株显着大于二尖瓣中的瓣膜。如果我们的发现得到证实,他们可以建议三尖瓣静脉间电池的机械机械平衡与二尖瓣常驻单元的电池不同,或者两者之间的机械装置之间的变化。任何一种现象都可能对TriCuspid阀门特异性手术技术和医疗器械的发展具有重要意义。

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