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足部皮肤力学行为的研究。

Investigation of the mechanical behaviour of the foot skin.

作者信息

Fontanella C G, Carniel E L, Forestiero A, Natali A N

机构信息

Centre of Mechanics of Biological Materials, University of Padova, Padova, Italy.

出版信息

Skin Res Technol. 2014 Nov;20(4):445-52. doi: 10.1111/srt.12139. Epub 2014 Feb 17.

Abstract

BACKGROUND/PURPOSE: The aim of this work was to provide computational tools for the characterization of the actual mechanical behaviour of foot skin, accounting for results from experimental testing and histological investigation. Such results show the typical features of skin mechanics, such as anisotropic configuration, almost incompressible behaviour, material and geometrical non linearity. The anisotropic behaviour is mainly determined by the distribution of collagen fibres along specific directions, usually identified as cleavage lines.

METHODS

To evaluate the biomechanical response of foot skin, a refined numerical model of the foot is developed. The overall mechanical behaviour of the skin is interpreted by a fibre-reinforced hyperelastic constitutive model and the orientation of the cleavage lines is implemented by a specific procedure. Numerical analyses that interpret typical loading conditions of the foot are performed. The influence of fibres orientation and distribution on skin mechanics is outlined also by a comparison with results using an isotropic scheme.

RESULTS

A specific constitutive formulation is provided to characterize the mechanical behaviour of foot skin. The formulation is applied within a numerical model of the foot to investigate the skin functionality during typical foot movements. Numerical analyses developed accounting for the actual anisotropic configuration of the skin show lower maximum principal stress fields than results from isotropic analyses.

CONCLUSION

The developed computational models provide reliable tools for the investigation of foot tissues functionality. Furthermore, the comparison between numerical results from anisotropic and isotropic models shows the optimal configuration of foot skin.

摘要

背景/目的:本研究的目的是提供计算工具,以表征足部皮肤的实际力学行为,同时考虑实验测试和组织学研究的结果。这些结果显示了皮肤力学的典型特征,如各向异性结构、几乎不可压缩的行为、材料和几何非线性。各向异性行为主要由胶原纤维沿特定方向的分布决定,这些方向通常被确定为分裂线。

方法

为了评估足部皮肤的生物力学响应,建立了一个精细的足部数值模型。皮肤的整体力学行为由纤维增强超弹性本构模型解释,分裂线的方向通过特定程序实现。进行了解释足部典型加载条件的数值分析。通过与各向同性方案的结果进行比较,还概述了纤维取向和分布对皮肤力学的影响。

结果

提供了一种特定的本构公式来表征足部皮肤的力学行为。该公式应用于足部数值模型中,以研究典型足部运动期间的皮肤功能。考虑皮肤实际各向异性结构进行的数值分析显示,最大主应力场低于各向同性分析的结果。

结论

所开发的计算模型为研究足部组织功能提供了可靠的工具。此外,各向异性模型和各向同性模型的数值结果比较显示了足部皮肤的最佳结构。

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