Title
Implementation and validation of constitutive relations for human dermis mechanical response.
Abstract
Finite element models in conjunction with adequate constitutive relations are pivotal in several physiological and medical applications related to both native and engineered tissues, allowing to predict the tissue response under various loading states. In order to get reliable results, however, the validation of the constitutive models is crucial. Therefore, the main purpose of this work is to provide an experimental-computational approach to the biomechanical investigation of soft tissues such as the dermis. This is accomplished by implementing and validating three widely adopted hyperelastic constitutive models (the Ogden, the Holzapfel, and the Gasser-Ogden-Holzapfel laws) supposed to be adequate to reproduce human reticular dermis mechanical behavior. Biaxial experimental data have represented the basis for the determination of the respective material parameters identified thanks to the definition of a cost function accounting for the discrepancy between experimental and predicted data. Afterwards, the experimental tests have been reproduced through finite element simulations. Hence, the constitutive laws have been validated comparing experimental and numerical outcomes in terms of displacements of four reference points and stress-strain relations. Hence, an experimental-numerical framework is proposed for the investigation of collagenous tissues, which could become more accurate with larger and independent experimental datasets. Graphical abstract ᅟ.
Year
DOI
Venue
2018
10.1007/s11517-018-1843-y
Med. Biol. Engineering and Computing
Keywords
Field
DocType
Human dermis,Anisotropy,Biaxial test,Finite element,Hyperelastic models
Hyperelastic material,Experimental data,Dermis,Reticular Dermis,Electronic engineering,Finite element method,Ogden,Mathematics,Structural engineering
Journal
Volume
Issue
ISSN
56
11
0140-0118
Citations 
PageRank 
References 
0
0.34
1
Authors
5
Name
Order
Citations
PageRank
Alessandra Aldieri100.34
Mara Terzini200.34
C. Bignardi321.42
E. M. Zanetti421.08
Alberto L. Audenino500.68