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首页> 外文期刊>Journal of Biomechanics >Regional stiffening of the mitral valve anterior leaflet in the beating ovine heart.
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Regional stiffening of the mitral valve anterior leaflet in the beating ovine heart.

机译:跳动的绵羊心脏中二尖瓣前小叶的局部变硬。

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摘要

Left atrial muscle extends into the proximal third of the mitral valve (MV) anterior leaflet and transient tensing of this muscle has been proposed as a mechanism aiding valve closure. If such tensing occurs, regional stiffness in the proximal anterior mitral leaflet will be greater during isovolumic contraction (IVC) than isovolumic relaxation (IVR) and this regional stiffness difference will be selectively abolished by beta-receptor blockade. We tested this hypothesis in the beating ovine heart. Radiopaque markers were sewn around the MV annulus and on the anterior MV leaflet in 10 sheep hearts. Four-dimensional marker coordinates were obtained from biplane videofluoroscopy before (CRTL) and after administration of esmolol (ESML). Heterogeneous finite element models of each anterior leaflet were developed using marker coordinates over matched pressures during IVC and IVR for CRTL and ESML. Leaflet displacements were simulated using measured left ventricular and atrial pressures and a response function was computed as the difference between simulated and measured displacements. Circumferential and radial elastic moduli for ANNULAR, BELLY and EDGE leaflet regions were iteratively varied until the response function reached a minimum. The stiffness values at this minimum were interpreted as the in vivo regional material properties of the anterior leaflet. For all regions and all CTRL beats IVC stiffness was 40-58% greater than IVR stiffness. ESML reduced ANNULAR IVC stiffness to ANNULAR IVR stiffness values. These results strongly implicate transient tensing of leaflet atrial muscle during IVC as the basis of the ANNULAR IVC-IVR stiffness difference.
机译:左心房肌伸入二尖瓣(MV)前小叶的近端三分之一,这种肌肉的短暂张紧已被提议作为一种辅助瓣膜闭合的机制。如果出现这种张紧,则在等容收缩(IVC)期间近端二尖瓣小叶的区域硬度将比等容松弛(IVR)更大,并且该β-受体阻滞剂将有选择地消除该区域硬度差异。我们在跳动的绵羊心脏中检验了这一假设。将不透射线的标记物缝在10个绵羊心脏的MV环周围和MV前瓣上。在使用艾司洛尔之前(CRTL)和使用艾司洛尔之后(ESML),可从双平面荧光透视获得四维标记坐标。使用CRTL和ESML的IVC和IVR期间在匹配压力下的标记坐标建立了每个前小叶的异质有限元模型。使用测量的左心室和心房压力模拟小叶位移,并计算响应函数作为模拟位移和测量位移之间的差异。环形,BELLY和EDGE小叶区域的周向和径向弹性模量反复变化,直到响应函数达到最小值。在该最小值处的刚度值被解释为前小叶的体内区域材料特性。对于所有区域和所有CTRL拍子,IVC刚度都比IVR刚度高40-58%。 ESML将环形IVC刚度降低到环形IVR刚度值。这些结果强烈暗示了IVC期间瓣膜房肌的短暂张紧是环IVC-IVR刚度差异的基础。

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