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猪皮下脂肪组织在钝性冲击下直至不可逆变形的实验特性研究。

Experimental characterisation of porcine subcutaneous adipose tissue under blunt impact up to irreversible deformation.

机构信息

Biomechanics and Accident Analysis, Institute of Legal Medicine, Ludwig-Maximilians-Universität München, Nussbaumstr. 26, 80336, Munich, Germany.

School of Engineering and Design, Technical University of Munich TUM, Arcisstr. 21, 80333, Munich, Germany.

出版信息

Int J Legal Med. 2022 May;136(3):897-910. doi: 10.1007/s00414-021-02755-0. Epub 2021 Dec 4.

Abstract

A deeper understanding of the mechanical characteristics of adipose tissue under large deformation is important for the analysis of blunt force trauma, as adipose tissue alters the stresses and strains that are transferred to subjacent tissues. Hence, results from drop tower tests of subcutaneous adipose tissue are presented (i) to characterise adipose tissue behaviour up to irreversible deformation, (ii) to relate this to the microstructural configuration, (iii) to quantify this deformation and (iv) to provide an analytical basis for computational modelling of adipose tissue under blunt impact. The drop tower experiments are performed exemplarily on porcine subcutaneous adipose tissue specimens for three different impact velocities and two impactor geometries. An approach based on photogrammetry is used to derive 3D representations of the deformation patterns directly after the impact. Median values for maximum impactor acceleration for tests with a flat cylindrical impactor geometry at impact velocities of 886 mm/s, 1253 mm/s and 2426 mm/s amount to 61.1 g, 121.6 g and 264.2 g, respectively, whereas thickness reduction of the specimens after impact amount to 16.7%, 30.5% and 39.3%, respectively. The according values for tests with a spherically shaped impactor at an impact velocity of 1253 mm/s are 184.2 g and 78.7%. Based on these results, it is hypothesised that, in the initial phase of a blunt impact, adipose tissue behaviour is mainly governed by the behaviour of the lipid inside the adipocytes, whereas for further loading, contribution of the extracellular collagen fibre network becomes more dominant.

摘要

深入了解脂肪组织在大变形下的力学特性对于钝性创伤分析很重要,因为脂肪组织改变了传递到下方组织的应力和应变。因此,本文呈现了皮下脂肪组织落塔试验的结果:(i)描述脂肪组织在不可逆变形前的行为,(ii)将其与微观结构构型联系起来,(iii)量化这种变形,(iv)为钝性冲击下脂肪组织的计算建模提供分析基础。落塔试验以三种不同的冲击速度和两种冲击器几何形状为例,在猪的皮下脂肪组织标本上进行。采用基于摄影测量的方法,在冲击后直接获得变形模式的 3D 表示。采用圆柱形冲击器几何形状的试验中,冲击速度为 886 mm/s、1253 mm/s 和 2426 mm/s 时,最大冲击器加速度的中位数值分别为 61.1 g、121.6 g 和 264.2 g,而冲击后标本的厚度减少量分别为 16.7%、30.5%和 39.3%。冲击速度为 1253 mm/s 时,球形冲击器的试验相应值为 184.2 g 和 78.7%。基于这些结果,可以假设在钝性冲击的初始阶段,脂肪组织的行为主要由脂肪细胞内的脂质行为决定,而对于进一步的加载,细胞外胶原纤维网络的贡献变得更加重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba05/9005403/bba3d4cfc258/414_2021_2755_Fig1_HTML.jpg

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