首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Active contraction of cardiac muscle: in vivo characterization of mechanical activation sequences in the beating heart.
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Active contraction of cardiac muscle: in vivo characterization of mechanical activation sequences in the beating heart.

机译:心肌的主动收缩:在跳动的心脏中机械激活序列的体内表征。

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Progressive alterations in cardiac wall strains are a classic hallmark of chronic heart failure. Accordingly, the objectives of this study are to establish a baseline characterization of cardiac strains throughout the cardiac cycle, to quantify temporal, regional, and transmural variations of active fiber contraction, and to identify pathways of mechanical activation in the healthy beating heart. To this end, we insert two sets of twelve radiopaque beads into the heart muscle of nine sheep; one in the anterior-basal and one in the lateral-equatorial left ventricular wall. During three consecutive heartbeats, we record the bead coordinates via biplane videofluoroscopy. From the resulting four-dimensional data sets, we calculate the temporally and transmurally varying Green-Lagrange strains in the anterior and lateral wall. To quantify active contraction, we project the strains onto the local muscle fiber directions. We observe that mechanical activation is initiated at the endocardium slightly after end diastole and progresses transmurally outward, reaching the epicardium slightly before end systole. Accordingly, fibers near the outer wall are in contraction for approximately half of the cardiac cycle while fibers near the inner wall are in contraction almost throughout the entire cardiac cycle. In summary, cardiac wall strains display significant temporal, regional, and transmural variations. Quantifying wall strain profiles might be of particular clinical significance when characterizing stages of left ventricular remodeling, but also of engineering relevance when designing new biomaterials of similar structure and function.
机译:心脏壁张力的逐渐改变是慢性心力衰竭的经典标志。因此,本研究的目的是建立整个心动周期中心脏应变的基线特征,量化活性纤维收缩的时间,区域和跨壁变化,并确定健康跳动的心脏中机械激活的途径。为此,我们将两组十二个不透射线的珠子插入九只绵羊的心肌中。一只在前基底,另一只在赤道外侧。在三个连续的心跳期间,我们通过双翼飞机荧光透视记录珠的坐标。从产生的三维数据集,我们计算前壁和侧壁的时变和透壁变化的格林-拉格朗日应变。为了量化主动收缩,我们将应变投影到局部肌肉纤维方向上。我们观察到舒张末期后稍稍在心内膜开始机械激活,并经跨壁向外发展,在收缩末期稍早到达心外膜。因此,外壁附近的纤维收缩约心动周期的一半,而内壁附近的纤维几乎在整个心动周期中收缩。总之,心脏壁应变显示出明显的时间,区域和透壁变化。在表征左心室重塑的阶段时,量化壁应变曲线可能具有特殊的临床意义,但在设计具有相似结构和功能的新生物材料时,也具有工程意义。

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