Sacks M S, Chuong C J
Joint Biomedical Engineering Program, University of Texas, Arlington 76019.
J Biomech Eng. 1993 May;115(2):202-5. doi: 10.1115/1.2894122.
The biaxial mechanical properties of right ventricular free wall (RVFW) myocardium were studied. Tissue specimens were obtained from the sub-epicardium of potassium-arrested hearts and different stretch protocols were used to characterize the myocardium's mechanical response. To assess regional differences, we excised tissue specimens from the conus and sinus regions. The RVFW myocardium was found to be consistently anisotropic, with a greater stiffness along the preferred (or averaged) fiber direction. The anisotropy in the conus region was more pronounced than in the sinus region. A comparison with studies of left ventricle (LV) midwall myocardium revealed that, 1) the fiber direction stiffnesses are greater in the RVFW than in the LV, 2) the degree of anisotropy is greater in the RVFW than in the LV.
研究了右心室游离壁(RVFW)心肌的双轴力学特性。组织样本取自钾停搏心脏的心外膜下,采用不同的拉伸方案来表征心肌的力学反应。为评估区域差异,我们从圆锥和窦区域切除组织样本。发现RVFW心肌始终呈各向异性,沿优选(或平均)纤维方向的刚度更大。圆锥区域的各向异性比窦区域更明显。与左心室(LV)中层心肌的研究比较表明,1)RVFW的纤维方向刚度大于LV,2)RVFW的各向异性程度大于LV。