Literature DB >> 19954778

A strain-hardening bi-power law for the nonlinear behaviour of biological soft tissues.

S Nicolle1, P Vezin, J-F Palierne.   

Abstract

Biological soft tissues exhibit a strongly nonlinear viscoelastic behaviour. Among parenchymous tissues, kidney and liver remain less studied than brain, and a first goal of this study is to report additional material properties of kidney and liver tissues in oscillatory shear and constant shear rate tests. Results show that the liver tissue is more compliant but more strain hardening than kidney. A wealth of multi-parameter mathematical models has been proposed for describing the mechanical behaviour of soft tissues. A second purpose of this work is to develop a new constitutive law capable of predicting our experimental data in the both linear and nonlinear viscoelastic regime with as few parameters as possible. We propose a nonlinear strain-hardening fractional derivative model in which six parameters allow fitting the viscoelastic behaviour of kidney and liver tissues for strains ranging from 0.01 to 1 and strain rates from 0.0151 s(-1) to 0.7s(-1). Copyright (c) 2009 Elsevier Ltd. All rights reserved.

Mesh:

Year:  2009        PMID: 19954778     DOI: 10.1016/j.jbiomech.2009.11.002

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  6 in total

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Journal:  J Am Soc Nephrol       Date:  2016-03-09       Impact factor: 10.121

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Review 3.  Viscoelasticity, Like Forces, Plays a Role in Mechanotransduction.

Authors:  Claudia Tanja Mierke
Journal:  Front Cell Dev Biol       Date:  2022-02-09

4.  Ultrasonic characterization of the nonlinear properties of canine livers by measuring shear wave speed and axial strain with increasing portal venous pressure.

Authors:  Veronica Rotemberg; Brett Byram; Mark Palmeri; Michael Wang; Kathryn Nightingale
Journal:  J Biomech       Date:  2013-05-30       Impact factor: 2.712

5.  Measurement of shear wave speed dispersion in the placenta by transient elastography: A preliminary ex vivo study.

Authors:  Emmanuel G Simon; Samuel Callé; Franck Perrotin; Jean-Pierre Remenieras
Journal:  PLoS One       Date:  2018-04-05       Impact factor: 3.240

6.  Nonlinear viscoelastic constitutive model for bovine liver tissue.

Authors:  Adela Capilnasiu; Lynne Bilston; Ralph Sinkus; David Nordsletten
Journal:  Biomech Model Mechanobiol       Date:  2020-02-10
  6 in total

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