Group of Structural Mechanics and Materials Modelling (GEMM), Aragón Institute of Engineering Research (I3A), University of Zaragoza, Spain.
J Mech Behav Biomed Mater. 2011 Apr;4(3):392-404. doi: 10.1016/j.jmbbm.2010.11.012. Epub 2010 Dec 3.
The aims of this study are to experimentally characterize the passive elastic behaviour of the rabbit abdominal wall and to develop a mechanical constitutive law which accurately reproduces the obtained experimental results. For this purpose, tissue samples from New Zealand White rabbits 2150±50 (g) were mechanically tested in vitro. Mechanical tests, consisting of uniaxial loading on tissue samples oriented along the craneo-caudal and the perpendicular directions, respectively, revealed the anisotropic non-linear mechanical behaviour of the abdominal tissues. Experiments were performed considering the composite muscle (including external oblique-EO, internal oblique-IO and transverse abdominis-TA muscle layers), as well as separated muscle layers (i.e., external oblique, and the bilayer formed by internal oblique and transverse abdominis). Both the EO muscle layer and the IO-TA bilayer demonstrated a stiffer behaviour along the transversal direction to muscle fibres than along the longitudinal one. The fibre arrangement was measured by means of a histological study which confirmed that collagen fibres are mainly responsible for the passive mechanical strength and stiffness. Furthermore, the degree of anisotropy of the abdominal composite muscle turned out to be less pronounced than those obtained while studying the EO and IO-TA separately. Moreover, a phenomenological constitutive law was used to capture the measured experimental curves. A Levenberg-Marquardt optimization algorithm was used to fit the model constants to reproduce the experimental curves.
本研究的目的是通过实验来描述兔腹壁的被动弹性行为,并开发一种能够准确再现实验结果的力学本构定律。为此,对 2150±50g 的新西兰白兔组织样本进行了体外力学测试。力学测试包括沿头尾方向和垂直方向对组织样本进行单轴加载,结果表明腹壁组织具有各向异性的非线性力学行为。实验考虑了复合肌肉(包括外斜肌、内斜肌和横腹肌)以及分离的肌肉层(即外斜肌和内斜肌和横腹肌形成的双层)。EO 肌肉层和 IO-TA 双层在垂直于纤维的方向上表现出比在平行于纤维的方向上更硬的行为。通过组织学研究测量了纤维排列,证实胶原蛋白纤维主要负责被动的机械强度和刚度。此外,与分别研究 EO 和 IO-TA 时相比,复合腹壁肌肉的各向异性程度较低。此外,还使用了一种唯象本构定律来捕捉测量的实验曲线。采用 Levenberg-Marquardt 优化算法来拟合模型常数,以再现实验曲线。