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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Direct and inverse identification of constitutive parameters from the structure of soft tissues. Part 1: micro- and nanostructure of collagen fibers
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Direct and inverse identification of constitutive parameters from the structure of soft tissues. Part 1: micro- and nanostructure of collagen fibers

机译:来自软组织结构的直接和逆识别组成型参数。 第1部分:胶原纤维的微型和纳米结构

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摘要

Soft tissues are characterized by a nonlinear mechanical response, highly affected by the multiscale structure of collagen fibers. The effectiveness and the calibration of constitutive models play a major role on the reliability and the applicability of computational models in biomechanics. This paper presents a procedure for the identification of the relationship between collagen-related structural features in soft tissues with model parameters of classical polynomial- and exponential-based constitutive models. Histological features at microscale, as well as biochemical and biophysical properties at nanoscale, are addressed by employing a multiscale structural description of soft tissue mechanics as benchmark data set. Both the direct (from structure to parameters) and the inverse (from parameters to structure) problem are addressed. Suitable optimization problems are introduced for accurate numerical and approximated analytical direct relationships. The inverse identification has been addressed by providing also a measure of the reliability of the computed estimates. Results show the effectiveness of the proposed strategies and allow to discuss the fitting capabilities of classical constitutive approaches in terms of parameters identification.
机译:软组织的特征在于非线性机械响应,受胶原纤维的多尺度结构的高度影响。本构模型的有效性和校准在生物力学中的可靠性和应用模型的可靠性和适用性起主要作用。本文介绍了具有古典多项式基于指数基本型模型的软组织中胶原相关结构特征的关系的程序。通过使用软组织力学的多尺度结构描述作为基准数据集来解决Microscale的组织学特征以及纳米级的生物化学和生物物理特征。解决了直接(从结构到参数)和逆(从参数到结构)问题。引入了适用的优化问题,用于准确数值和近似分析直接关系。通过提供计算估计的可靠性的衡量标准,已经解决了逆识别。结果表明,拟议策略的有效性,并允许在参数识别方面讨论经典本质方法的拟合能力。

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