Title of article :
Nanoscale viscoelasticity of extracellular matrix proteins in soft tissues: A multiscale approach
Author/Authors :
Miri، نويسنده , , Amir K. and Heris، نويسنده , , Hossein K. and Mongeau، نويسنده , , Luc and Javid، نويسنده , , Farhad، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2014
Pages :
9
From page :
196
To page :
204
Abstract :
It is hypothesized that the bulk viscoelasticity of soft tissues is determined by two length-scale-dependent mechanisms: the time-dependent response of the extracellular matrix (ECM) proteins at the nanometer scale and the biophysical interactions between the ECM solid structure and interstitial fluid at the micrometer scale. The latter is governed by poroelasticity theory assuming free motion of the interstitial fluid within the porous ECM structure. In a recent study (Heris, H.K., Miri, A.K., Tripathy, U., Barthelat, F., Mongeau, L., 2013. J. Mech. Behav. Biomed. Mater.), atomic force microscopy was used to measure the response of porcine vocal folds to a creep loading and a 50-nm sinusoidal oscillation. A constitutive model was calibrated and verified using a finite element model to accurately predict the nanoscale viscoelastic moduli of ECM. A generally good correlation was obtained between the predicted variation of the viscoelastic moduli with depth and that of hyaluronic acids in vocal fold tissue. We conclude that hyaluronic acids may regulate vocal fold viscoelasticity. The proposed methodology offers a characterization tool for biomaterials used in vocal fold augmentations.
Keywords :
Extracellular matrix proteins , Poroelasticity , Viscoelasticity , Indentation , vocal folds
Journal title :
Journal of the Mechanical Behavior of Biomedical Materials
Serial Year :
2014
Journal title :
Journal of the Mechanical Behavior of Biomedical Materials
Record number :
1406359
Link To Document :
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