University Grenoble Alpes, CNRS, CHU Grenoble Alpes, Grenoble INP, TIMC-IMAG, F-38000, Grenoble, France.
Institut de Biologie et de Pathologie, Centre Hospitalier Grenoble-Alpes, 38000, Grenoble, France.
Biomech Model Mechanobiol. 2018 Aug;17(4):939-950. doi: 10.1007/s10237-018-1003-1. Epub 2018 Jan 29.
This work aims at observing the mechanical behavior of the membranous and spongy portions of urethrae sampled on male cadavers in compliance with French regulations on postmortem testing, in accordance with the Scientific Council of body donation center of Grenoble. In this perspective, a thermostatic water tank was designed to conduct ex vivo planar tension tests in a physiological environment, i.e., in a saline solution at a temperature of [Formula: see text] [Formula: see text]. In order to observe the anisotropy of the tissues, the samples were tested in two directions. Tests consisting of a series of load-unload cycles of increasing amplitudes were performed to highlight their viscous behavior. The results were then discussed according to the microstructure of tissue, which was investigated using different staining methods and histological analysis. The observed behaviors were then fitted using an anisotropic hyperelastic or a visco-hyperelastic matrix-fiber model.
本工作旨在根据格勒诺布尔人体捐献中心科学委员会的规定,观察按照法国死后检测法规从男性尸体上采集的尿道膜部和海绵体部分的力学行为。为此,设计了一个恒温水箱,以在生理环境(即[Formula: see text]摄氏度的盐溶液中)下进行离体平面拉伸试验。为了观察组织的各向异性,将样品在两个方向上进行测试。进行了一系列加载-卸载循环的测试,幅度逐渐增加,以突出其粘性行为。然后根据组织的微观结构讨论结果,使用不同的染色方法和组织学分析进行了组织微观结构的研究。然后使用各向异性超弹性或粘弹性矩阵纤维模型对观察到的行为进行拟合。