首页> 外文期刊>Journal of Biomechanics >Stress-strain behavior of mitral valve leaflets in the beating ovine heart.
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Stress-strain behavior of mitral valve leaflets in the beating ovine heart.

机译:跳动的绵羊心脏中二尖瓣小叶的应力应变行为。

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Excised anterior mitral leaflets exhibit anisotropic, non-linear material behavior with pre-transitional stiffness ranging from 0.06 to 0.09 N/mm(2) and post-transitional stiffness from 2 to 9 N/mm(2). We used inverse finite element (FE) analysis to test, for the first time, whether the anterior mitral leaflet (AML), in vivo, exhibits similar non-linear behavior during isovolumic relaxation (IVR). Miniature radiopaque markers were sewn to the mitral annulus, AML, and papillary muscles in 8 sheep. Four-dimensional marker coordinates were obtained using biplane videofluoroscopic imaging during three consecutive cardiac cycles. A FE model of the AML was developed using marker coordinates at the end of isovolumic relaxation (when pressure difference across the valve is approximately zero), as the reference state. AML displacements were simulated during IVR using measured left ventricular and atrial pressures. AML elastic moduli in the radial and circumferential directions were obtained for each heartbeat by inverse FEA, minimizing the difference between simulated and measured displacements. Stress-strain curves for each beat were obtained from the FE model at incrementally increasing transmitral pressure intervals during IVR. Linear regression of 24 individual stress-strain curves (8 hearts, 3 beats each) yielded a mean (+/-SD) linear correlation coefficient (r(2)) of 0.994+/-0.003 for the circumferential direction and 0.995+/-0.003 for the radial direction. Thus, unlike isolated leaflets, the AML, in vivo, operates linearly over a physiologic range of pressures in the closed mitral valve.
机译:切除的二尖瓣前小叶表现出各向异性的非线性材料行为,过渡前刚度在0.06至0.09 N / mm(2)之间,过渡后刚度在2至9 N / mm(2)之间。我们首次使用逆有限元(FE)分析来测试体内二尖瓣前叶(AML)在等容松弛(IVR)期间是否表现出类似的非线性行为。将微型不透射线标记缝在8只绵羊的二尖瓣环,AML和乳头肌上。在三个连续的心动周期中使用双平面视频透视成像获得了四维标记坐标。使用等容弛豫结束时(当瓣膜两端的压差近似为零时)的标记坐标作为参考状态,开发了AML的FE模型。在IVR期间使用测得的左心室和心房压力模拟AML位移。通过逆FEA获得每个心跳在径向和圆周方向上的AML弹性模量,从而使模拟位移与测量位移之间的差异最小。在IVR期间,随着心跳压力间隔的增加,从FE模型获得每个搏动的应力-应变曲线。 24条单独的应力-应变曲线(8个心,每个3个心跳)的线性回归得出,圆周方向的平均(+/- SD)线性相关系数(r(2))为0.994 +/- 0.003,0.995 +/-径向为0.003。因此,与分离的小叶不同,AML在体内在封闭的二尖瓣的生理范围内线性运作。

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