DocumentCode :
1067223
Title :
A simple viscoelastic model for soft tissues the frequency range 6-20 MHz
Author :
Yang, Xinmai ; Church, Charles C.
Author_Institution :
Nat. Center for Phys. Acousti., Mississippi Univ., MS
Volume :
53
Issue :
8
fYear :
2006
Firstpage :
1404
Lastpage :
1411
Abstract :
In this paper, we present measurements of the shear properties of porcine skeletal muscle, liver, and kidney and a novel model describing them. Following a previously used method, shear mechanical impedances are measured, and complex shear moduli are obtained in the frequency range 6-20 MHz. As indicated in previous results, negative storage moduli are obtained in some measurements, which yield negative shear moduli in traditional linear viscoelastic models such as the Maxwell model, the Voigt model, and the Kelvin model. To resolve this problem, we propose a simple extension of the Voigt model. A mass is introduced into the model to account for the extra phase shift that apparently produces the negative moduli, and the shear stress thereby is related to the inertia of the material. The observed negative storage moduli are predicted by the new model when the relaxation time of the material is large and the working frequency is high. The model is fitted to experimental data to obtain values for material constants
Keywords :
biomechanics; kidney; liver; muscle; physiological models; shear modulus; viscoelasticity; 6 to 20 MHz; Kelvin model; Maxwell model; Voigt model; complex shear moduli; inertia; kidney; linear viscoelastic models; liver; negative shear moduli; negative storage moduli; phase shift; porcine skeletal muscle; shear mechanical impedances; shear properties; shear stress; simple viscoelastic model; soft tissues; Biological tissues; Elasticity; Frequency measurement; Impedance measurement; Kelvin; Liver; Material storage; Mechanical variables measurement; Muscles; Viscosity;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2006.1665097
Filename :
1665097
Link To Document :
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