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Transmural left ventricular mechanics underlying torsional recoil during relaxation

机译:放松过程中扭转后坐力的透壁左心室力学

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摘要

Early relaxation in the cardiac cycle is characterized by rapid torsional recoil of the left ventricular (LV) wall. To elucidate the contribution of the transmural arrangement of the myofiber to relaxation, we determined the time course of three-dimensional fiber-sheet strains in the anterior wall of five adult mongrel dogs in vivo during early relaxation with biplane cineangiography (125 Hz) of implanted transmural markers. Fiber-sheet strains were found from transmural fiber and sheet orientations directly measured in the heart tissue. The strain time course was determined during early relaxation in the epicardial, midwall, and endocardial layers referenced to the end-diastolic configuration. During early relaxation, significant circumferential stretch, wall thinning, and in-plane and transverse shear were observed (P < 0.05). We also observed significant stretch along myofibers in the epicardial layers and sheet shortening and shear in the endocardial layers (P < 0.01). Importantly, predominant epicardial stretch along the fiber direction and endocardial sheet shortening occurred during isovolumic relaxation (P < 0.05). We conclude that the LV mechanics during early relaxation involves substantial deformation of fiber and sheet structures with significant transmural heterogeneity. Predominant epicardial stretch along myofibers during isovolumic relaxation appears to drive global torsional recoil to aid early diastolic filling.
机译:心动周期的早期放松的特征是左心室(LV)壁快速扭转后坐。为了阐明肌纤维的跨壁排列对松弛的贡献,我们确定了植入的五只成年杂种犬的前壁在体内的早期松弛过程中的三维纤维薄片应变的时间过程,其中植入的双平面电影血管造影术(125 Hz)透壁标记。从透壁纤维和心脏组织中直接测量的片材取向中发现了纤维片材应变。应变时程是在心外膜,中壁和心内膜的早期舒张过程中确定的,以舒张末期的形态为参考。在早期放松过程中,观察到明显的周向拉伸,壁变薄以及面内和横向剪切(P <0.05)。我们还观察到了心外膜层中肌纤维的显着拉伸,心内膜层中的片材缩短和剪切(P <0.01)。重要的是,在等容舒张过程中,沿纤维方向的主要心外膜舒张和心内膜片缩短发生了(P <0.05)。我们得出的结论是,早期松弛过程中的LV力学涉及具有明显跨壁异质性的纤维和片状结构的大量变形。在等容松弛期间,沿肌纤维的主要心外膜舒张似乎驱动整体扭转后坐力,以帮助舒张早期充盈。

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