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Sex- and age-specific mechanical properties of liver tissue under dynamic loading conditions

机译:动态负载条件下肝组织的性和年龄特异性机械性能

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The liver is the most commonly injured abdominal organ following either blunt or penetrating impact. Current mechanical properties available in the literature are typically only measured at low strain rates, low strains, or use linear viscoelastic models. There is also a dearth of high-rate, large strain, viscoelastic data available for liver tissue which are required to model the deformation of the liver during high-rate impacts. Furthermore, the issue of whether mouse liver's mechanical properties are sex-dependent has not been addressed previously. Here, we present the first in vitro sex- and age-controlled mechanical characterisation of mixed-strain (C57BL and wild-type) mouse liver tissue at a localised length scale using large-deformation and high strain rate micro-indentation. We also investigated the effects of age on the mechanical properties of liver tissue. Force-relaxation experiments were performed on both male and female mouse livers up to 35% strain at 10/s and allowed to relax for 1s. The neo-Hookean based quasi-linear viscoelastic model was fitted to the experimental data to determine the large-strain behaviour of the tissue. A comprehensive statistical analysis was performed to determine whether any significant differences existed for (i) the short-term shear moduli and (ii) long-term shear moduli between 10 weeks-old male and female mouse livers, and (iii) the short-term and (iv) long-term shear moduli for 6, 10, and 56 weeks-old mouse livers. No significant differences were found between the mechanical properties in the sex groups. The 56 weeks-old liver tissue was found to be significantly stiffer than the 6 weeks-old liver tissue, but not the 10 weeks-old.
机译:肝脏是患有钝或渗透冲击之后最常见的腹部器官。文献中可获得的电流机械性能通常仅在低应变率,低菌株或使用线性粘弹性模型时测量。还有一种高速率,大应变,可用于肝组织的粘弹性数据,这是在高速撞击期间模拟肝脏变形所需的肝组织。此外,先前尚未解决是否尚未解决鼠标肝脏机械性能是性依赖性的问题。在这里,我们介绍了使用大变形和高应变率微压痕的局部长度尺度的混合菌株(C57BL和野生型)小鼠肝组织的第一种体外性别和年龄控制的机械表征。我们还研究了年龄对肝组织力学性能的影响。在10 / s的雄性和雌性小鼠肝脏上进行力松弛实验,在10 / s的含量高达35%菌株,并允许放松1S。基于Neo-Hoxean的准线性粘弹性模型适用于实验数据以确定组织的大应变行为。进行全面的统计分析以确定是否存在任何显着差异(i)短期剪切模量和(ii)在10周龄雄性和女性小鼠肝脏之间的长期剪切模量,(iii)短期 - 术语和(iv)6,10和56周龄小鼠肝脏的长期剪切模量。在性别组中的机械性能之间没有发现显着差异。发现56周龄肝脏组织比6周龄肝组织显着逆时同样,但不是10周龄。

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