首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Inverse finite element analysis of indentation tests to determine hyperelastic parameters of soft-tissue layers
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Inverse finite element analysis of indentation tests to determine hyperelastic parameters of soft-tissue layers

机译:压痕测试的反向有限元分析,以确定软组织层的超弹性参数

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Indentation is being used increasingly to probe the mechanical behaviour of cells, the extra-cellular matrix, and organs. Multiple hyperelastic parameters have been extracted from indentation data, but their accuracy has not been evaluated. Consequently, this paper examines whether two non-linear hyperelastic parameters or even a single generalized elastic modulus E can be extracted accurately from atomic force microscopy and nanoindentation force-depth data. Tissue was modelled as incompressible isotropic Mooney-Rivlin (MR), polynomial (POLY), or exponential (EXP) layers. For each model, n = 9 sets of the two hyperelastic parameters (all with R~2 > 0.99) were extracted from an artificial 'benchmark' by running our inverse finite-element-based extraction algorithm multiple times. Error between the mean extracted E and the known 'benchmark' value was 5.5 per cent for an MR layer, 3.6 per cent for a POLY layer, and 20.6 per cent for an EXP layer. Errors in at least one of the two hyperelastic parameters reached 75 per cent for the MR layer, 33 per cent for the POLY layer, and 400 per cent for the EXP layer, indicating that indentation has limited potential to extract two or more hyperelastic parameters accurately. However, the generalized elastic modulus extracted from indentation could be used as a quantitative measure to evaluate the influence of altered processing conditions, pathology, etc.
机译:压痕被越来越多地用于探测细胞,细胞外基质和器官的机械行为。已从压痕数据中提取了多个超弹性参数,但尚未评估其准确性。因此,本文研究了是否可以从原子力显微镜和纳米压痕力深度数据中准确地提取出两个非线性超弹性参数,甚至单个广义弹性模量E。组织建模为不可压缩的各向同性Mooney-Rivlin(MR),多项式(POLY)或指数(EXP)层。对于每个模型,通过多次运行基于有限元的逆提取算法,从人工“基准”中提取了n = 9组的两个超弹性参数(均具有R〜2> 0.99)。 MR层的平均提取E与已知“基准”值之间的误差为5.5%,对于POLY层为3.6%,对于EXP层为20.6%。对于MR层,这两个超弹性参数中至少一个的误差达到75%,对于POLY层,误差为33%,对于EXP层,误差为400%,这表明压痕精确提取两个或多个超弹性参数的潜力有限。 。但是,从压痕中提取的广义弹性模量可以用作评估加工条件,病理等因素影响的定量方法。

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