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Biaxial mechanical properties of swine uterosacral and cardinal ligaments

机译:猪子宫ac和主韧带的双轴力学性能

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Mechanical alterations to pelvic floor ligaments may contribute to the development and progression of pelvic floor disorders. In this study, the first biaxial elastic and viscoelastic properties were determined for uterosacral ligament (USL) and cardinal ligament (CL) complexes harvested from adult female swine. Biaxial stress–stretch data revealed that the ligaments undergo large strains. They are orthotropic, being typically stiffer along their main physiological loading direction (i.e., normal to the upper vaginal wall). Biaxial stress relaxation data showed that the ligaments relax equally in both loading directions and more when they are less stretched. In order to describe the experimental findings, a three-dimensional constitutive law based on the Pipkin–Rogers integral series was formulated. The model accounts for incompressibility, large deformations, nonlinear elasticity, orthotropy, and stretch-dependent stress relaxation. This combined theoretical and experimental study provides new knowledge about the mechanical properties of USLs and CLs that could lead to the development of new preventive and treatment methods for pelvic floor disorders.
机译:骨盆底韧带的机械改变可能有助于骨盆底疾病的发生和发展。在这项研究中,确定了从成年雌性猪收获的子宫ros韧带(USL)和主韧带(CL)复合物的第一个双轴弹性和粘弹性。双轴应力-拉伸数据表明,韧带承受较大的应变。它们是正交各向异性的,通常沿其主要的生理负荷方向(即垂直于上阴道壁)变硬。双轴应力松弛数据显示,韧带在两个加载方向上均等地松弛,而在拉伸较少时则更多。为了描述实验结果,制定了基于Pipkin-Rogers积分级数的三维本构律。该模型考虑了不可压缩性,大变形,非线性弹性,正交各向异性以及与拉伸有关的应力松弛。这项理论和实验相结合的研究提供了有关USL和CL的机械特性的新知识,这些知识可能会导致开发新的骨盆底疾病预防和治疗方法。

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