Sacks M S, Chuong C J, More R
Department of Biomedical Engineering, University of Miami, Coral Gables, FL 33124, USA.
ASAIO J. 1994 Jul-Sep;40(3):M632-7. doi: 10.1097/00002480-199407000-00075.
Small-angle light scattering (SALS) was used to quantify the collagen fiber architecture of 12 bovine pericardium (BP) specimens overlying the right and left anterior surfaces of the heart. The collagen fiber architecture was described in terms of preferred collagen fiber directions, volume fractions (Vf), and degree of orientation. To explore the relationship between BP collagen architecture and mechanical anisotropy, biaxial mechanical tests were performed on two specimens chosen for their extremes of collagen fiber architecture. About 38% of the SALS test locations showed the occurrence of two distinct collagen fiber populations, with the primary population Vf typically 90%. Structurally, the left anterior specimens appeared to be the most homogeneous, with an overall preferred direction close to the circumferential direction of the heart. The right side specimens were inconsistent, with a broad range of fiber orientations. The direction of greatest stiffness was consistent with the underlying collagen fiber architecture. Overall, these results suggest that 1) the mechanical behavior of BP is quantitatively consistent with its collagen fiber architecture; 2) the variability of BP mechanical anisotropy is caused by variations in collagen fiber preferred directions; and 3) the left anterior side of the bovine pericardial sac might be a good material selection site for bioprosthesis fabrication.
采用小角光散射(SALS)对覆盖在心脏左右前表面的12个牛心包(BP)标本的胶原纤维结构进行量化。根据胶原纤维的优选方向、体积分数(Vf)和取向程度来描述胶原纤维结构。为了探究BP胶原结构与力学各向异性之间的关系,对两个因胶原纤维结构极端而选取的标本进行了双轴力学测试。约38%的SALS测试位置显示出现了两种不同的胶原纤维群体,主要群体的Vf通常为90%。在结构上,左前标本似乎最为均匀,整体优选方向接近心脏的圆周方向。右侧标本不一致,纤维取向范围广泛。最大刚度方向与潜在的胶原纤维结构一致。总体而言,这些结果表明:1)BP的力学行为在数量上与其胶原纤维结构一致;2)BP力学各向异性的变异性是由胶原纤维优选方向的变化引起的;3)牛心包囊的左前侧可能是生物假体制造的良好材料选择部位。