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用于结肠组织力学研究的本构公式。

Constitutive formulations for the mechanical investigation of colonic tissues.

作者信息

Carniel Emanuele Luigi, Gramigna Vera, Fontanella Chiara Giulia, Stefanini Cesare, Natali Arturo N

机构信息

Department of Industrial Engineering, University of Padova, Padova, Italy; Centre of Mechanics of Biological Materials, University of Padova, Padova, Italy.

出版信息

J Biomed Mater Res A. 2014 May;102(5):1243-54. doi: 10.1002/jbm.a.34787. Epub 2013 May 24.

Abstract

A constitutive framework is provided for the characterization of the mechanical behavior of colonic tissues, as a fundamental tool for the development of numerical models of the colonic structures. The constitutive analysis is performed by a multidisciplinary approach that requires the cooperation between experimental and computational competences. The preliminary investigation pertains to the review of the tissues histology. The complex structural configuration of the tissues and the specific distributions of fibrous elements entail the nonlinear mechanical behavior and the anisotropic response. The identification of the mechanical properties requires to perform mechanical tests according to different loading situations, as different loading directions. Because of the typical functionality of colon structures, the tissues mechanics is investigated by tensile tests, which are performed on taenia coli and haustra specimens from fresh pig colons. Accounting for the histological investigation and the results from the mechanical tests, a specific hyperelastic framework is provided within the theory of fiber-reinforced composite materials. Preliminary analytical formulations are defined to identify the constitutive parameters by the inverse analysis of the experimental tests. Finite element models of the specimens are developed accounting for the actual configuration of the colon structures to verify the quality of the results. The good agreement between experimental and numerical model results suggests the reliability of the constitutive formulations and parameters. Finally, the developed constitutive analysis makes it possible to identify the mechanical behavior and properties of the different colonic tissues.

摘要

本文提供了一个本构框架,用于表征结肠组织的力学行为,作为构建结肠结构数值模型的基础工具。本构分析采用多学科方法进行,需要实验和计算能力的协同合作。初步研究涉及对组织组织学的审查。组织复杂的结构配置和纤维成分的特定分布导致了非线性力学行为和各向异性响应。确定力学性能需要根据不同的加载情况(如不同的加载方向)进行力学测试。由于结肠结构的典型功能,通过对新鲜猪结肠的结肠带和结肠袋标本进行拉伸试验来研究组织力学。考虑到组织学研究和力学测试结果,在纤维增强复合材料理论范围内提供了一个特定的超弹性框架。定义了初步的解析公式,通过对实验测试的反分析来确定本构参数。考虑到结肠结构的实际配置,开发了标本的有限元模型,以验证结果的质量。实验结果与数值模型结果之间的良好一致性表明了本构公式和参数的可靠性。最后,所开展的本构分析能够确定不同结肠组织的力学行为和特性。

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