首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Direct measurement of transmural laminar architecture in the anterolateral wall of the ovine left ventricle: new implications for wall thickening mechanics
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Direct measurement of transmural laminar architecture in the anterolateral wall of the ovine left ventricle: new implications for wall thickening mechanics

机译:直接测量绵羊左心室前外侧壁的透壁层流结构:对壁增厚力学的新影响

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摘要

Laminar, or sheet, architecture of the left ventricle (LV) is a structural basis for normal systolic and diastolic LV dynamics, but transmural sheet orientations remain incompletely characterized. We directly measured the transmural distribution of sheet angles in the ovine anterolateral LV wall. Ten Dorsett-hybrid sheep hearts were perfusion fixed in situ with 5% buffered glutaraldehyde at end diastole and stored in 10% formalin. Transmural blocks of myocardial tissue were excised, with the edges cut parallel to local circumferential, longitudinal, and radial axes, and sliced into 1-mm-thick sections parallel to the epicardial tangent plane from epicardium to endocardium. Mean fiber directions were determined in each section from five measurements of fiber angles. Each section was then cut transverse to the fiber direction, and five sheet angles (β) were measured and averaged. Mean fiber angles progressed nearly linearly from −41° (SD 11) at the epicardium to +42° (SD 16) at the endocardium. Two families of sheets were identified at approximately +45° (β+) and −45° (β). In the lateral region (n = 5), near the epicardium, sheets belonged to the β+ family; in the midwall, to the β family; and near the endocardium, to the β+ family. This pattern was reversed in the basal anterior region (n = 4). Sheets were uniformly β over the anterior papillary muscle (n = 2). These direct measurements of sheet angles reveal, for the first time, alternating transmural families of predominant sheet angles. This may have important implications in understanding wall mechanics in the normal and the failing heart.
机译:左心室(LV)的层状或片状结构是正常收缩和舒张性LV动力学的结构基础,但透壁片状取向仍未完全表征。我们直接测量了绵羊前外侧LV壁中板角的透壁分布。在舒张末期用5%的戊二醛缓冲液原位灌注固定十只Dorsett杂种绵羊心脏,并保存在10%的福尔马林中。切下心肌组织的透壁块,将其边缘切成平行于局部圆周,纵轴和radial轴,并切成1毫米厚的切片,与心外膜到心内膜的心外膜切平面平行。通过对纤维角度的五次测量确定每个部分的平均纤维方向。然后将每个部分横向于纤维方向切割,并测量并平均五个薄片角(β)。平均纤维角从心外膜处的-41°(SD 11)到心内膜处的+ 42°(SD 16)几乎呈线性增长。在大约+ 45°(β + )和-45°(β-)处发现了两类薄片。在心外膜附近的外侧区域(n = 5)中,床单属于β + 家族。在中壁,属于β-家族;并靠近心内膜,进入β + 家族。这种模式在基底前区(n = 4)相反。薄片在前乳头肌上均匀地为β-(n = 2)。这些对角钢的直接测量首次揭示了主要角钢的交替透壁族。这可能对理解正常心脏和衰竭心脏的壁力学有重要意义。

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