首页> 外文期刊>生体医工学 >等容性収縮期における左心室壁の変形解析:心筋線維の配向性が壁変形に与える影響
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等容性収縮期における左心室壁の変形解析:心筋線維の配向性が壁変形に与える影響

机译:等张性收缩期间左心室壁的变形分析:心肌纤维取向对壁变形的影响

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摘要

The aim of this study was to elucidate the effects of myocardial fiber orientation on the deformation of the left ventricular (LV) wall. An LV wall model was constructed by modeling the myocardial fiber structure as an anisotropic hyperelastic material. The shapes of the endocardium and epicardium were assumed to be two spheroids. LV wall deformation by constriction of the myocardial fibers was simulated for three fiber orientations: the myocardial fiber was oriented parallel to the short-axis plane (Case 1);the angle between the myocardial fiber and the short-axis plane varied linearly from + π/3 in the endocardium to 一 π/3 in the epicardium (Case 2); and the myocardial fiber was uniformly oriented at an angle of -π/3 with respect to the short-axis plane (Case 3). The results showed that the LV wall deformation was governed by the interaction among the constriction of fibers, the wall deformation as a continuum body, and the geometric constrains of the LV anatomy. Comparing the results of three cases revealed that the helical structure of fibers contributes to cause a twisting motion and efficient contraction of the LV wall, which produces a heterogeneous distribution of the deformation rates in the LV wall.
机译:这项研究的目的是阐明心肌纤维取向对左心室(LV)壁变形的影响。通过将心肌纤维结构建模为各向异性的超弹性材料来构建LV壁模型。心内膜和心外膜的形状被假定为两个球体。在三个纤维方向上模拟了由心肌纤维收缩引起的左室壁变形:心肌纤维平行于短轴平面定向(情况1);心肌纤维与短轴平面之间的角度从+π线性变化心内膜中的/ 3到心外膜中的一π/ 3(情况2);心肌纤维相对于短轴平面以-π/ 3的角度均匀取向(情况3)。结果表明,LV壁的变形受纤维的收缩,作为连续体的壁变形以及LV解剖结构的几何约束之间的相互作用所控制。比较三种情况的结果表明,纤维的螺旋结构有助于引起LV壁的扭曲运动和有效收缩,从而在LV壁中产生变形率的不均匀分布。

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