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猪皮肤组织中应力软化和永久变形的本构模型:储存保存的影响

Constitutive modeling of stress softening and permanent set in a porcine skin tissue: Impact of the storage preservation.

作者信息

Caro-Bretelle A S, Ienny P, Leger R, Corn S, Bazin I, Bretelle F

机构信息

C2MA, Ecole des Mines d'Alès, Alès, France.

C2MA, Ecole des Mines d'Alès, Alès, France.

出版信息

J Biomech. 2016 Sep 6;49(13):2863-2869. doi: 10.1016/j.jbiomech.2016.06.026. Epub 2016 Jun 27.

DOI:10.1016/j.jbiomech.2016.06.026
PMID:27416779
Abstract

Prior to testing, soft tissues are usually maintained in different media and additives (solution, air, cryopreservant…) under various environment conditions (temperature, storage duration….). In many cases, results from mechanical tests performed on these stored tissues are supposed to be as closed as possible to the fresh ones. In the present work, cyclic tensile tests were performed with increasing values of strain on porcine skin tissues (excised following the Langer's lines) to enhance tissues mechanical nonlinearity such as softening behavior and permanent set. Optical methods were used to follow the in-plane strains evolution. These latest values were used as data to simulate the structural behavior of these heterogeneous materials. The numerical simulation is based on the constitutive pseudo-elastic model accounting for the softening behavior as well as the permanent set. As a result, reliable material parameters were extracted from the experiments/model comparison for each storage solution. The result of this study reveals that preservation conditions must be carefully chosen: at low strain the tissues store in fridge in a saline solution during a short time, or in freezer (-80°C) in water with cryopreservant and the fresh one lead to a similar mechanical response. For larger strain, the freezing (-80°C) in water with cryopreservant is the only procedure for which the tissue recovers its initial behavior.

摘要

在测试之前,软组织通常在各种环境条件(温度、储存时长等)下保存在不同的介质和添加剂(溶液、空气、冷冻保护剂等)中。在许多情况下,对这些储存组织进行的力学测试结果应尽可能接近新鲜组织的结果。在本研究中,对猪皮肤组织(沿朗格线切除)进行了应变值递增的循环拉伸试验,以增强组织的力学非线性,如软化行为和永久变形。采用光学方法跟踪面内应变的演变。这些最新值被用作数据来模拟这些异质材料的结构行为。数值模拟基于考虑软化行为和永久变形的本构伪弹性模型。结果,从每种储存溶液的实验/模型比较中提取了可靠的材料参数。本研究结果表明,必须谨慎选择保存条件:在低应变下,组织在短时间内保存在冰箱中的盐溶液中,或在含有冷冻保护剂的水中保存在冷冻柜(-80°C)中,其力学响应与新鲜组织相似。对于较大应变,在含有冷冻保护剂的水中冷冻(-80°C)是组织恢复其初始行为的唯一方法。

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