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Original Article

Viscoelastic Behavior of Osteoarthritic Cartilage

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Pages 223-233 | Received 06 Sep 2000, Accepted 15 Mar 2001, Published online: 06 Aug 2009

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Yuhe Fan, Guangyi Zhou, Guitang Zhang & Feng Li. (2021) Comparative study on the mechanical behavior of the interface between natural cartilage and artificial cartilage. Soft Materials 19:4, pages 400-419.
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Frederick H. Silver, Ali Ebrahimi & Patrick B. Snowhill. (2002) Viscoelastic Properties of Self-Assembled Type I Collagen Fibers: Molecular Basis of Elastic and Viscous Behaviors. Connective Tissue Research 43:4, pages 569-580.
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Sepanta Fazaeli, Samaneh Ghazanfari, Fereshteh Mirahmadi, Vincent Everts, Theodoor Henri Smit & Jan Harm Koolstra. (2019) The dynamic mechanical viscoelastic properties of the temporomandibular joint disc: The role of collagen and elastin fibers from a perspective of polymer dynamics. Journal of the Mechanical Behavior of Biomedical Materials 100, pages 103406.
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S. Ihrle, R. Gerig, I. Dobrev, C. Röösli, J.H. Sim, A.M. Huber & A. Eiber. (2016) Biomechanics of the incudo-malleolar-joint – Experimental investigations for quasi-static loads. Hearing Research 340, pages 69-78.
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Ans Van GinckelErik Witvrouw. (2013) Acute Cartilage Loading Responses After an In Vivo Squatting Exercise in People With Doubtful to Mild Knee Osteoarthritis: A Case-Control Study. Physical Therapy 93:8, pages 1049-1060.
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M.E. Mononen, M.T. Mikkola, P. Julkunen, R. Ojala, M.T. Nieminen, J.S. Jurvelin & R.K. Korhonen. (2012) Effect of superficial collagen patterns and fibrillation of femoral articular cartilage on knee joint mechanics?A 3D finite element analysis. Journal of Biomechanics 45:3, pages 579-587.
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W. Wagermaier & P. Fratzl. 2012. Polymer Science: A Comprehensive Reference. Polymer Science: A Comprehensive Reference 35 55 .
David M. Pierce, Werner Trobin, José G. Raya, Siegfried Trattnig, Horst Bischof, Christian Glaser & Gerhard A. Holzapfel. (2010) DT-MRI Based Computation of Collagen Fiber Deformation in Human Articular Cartilage: A Feasibility Study. Annals of Biomedical Engineering 38:7, pages 2447-2463.
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David M. Pierce, Werner Trobin & Gerhard A. Holzapfel. (2009) A Computational Framework for Patient‐Specific Analysis of Articular Cartilage Incorporating Structural Information from DT‐MRI. GAMM-Mitteilungen 32:2, pages 157-177.
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David M. Pierce, Werner Trobin, Siegfried Trattnig, Horst Bischof & Gerhard A. Holzapfel. (2009) A Phenomenological Approach Toward Patient-Specific Computational Modeling of Articular Cartilage Including Collagen Fiber Tracking. Journal of Biomechanical Engineering 131:9.
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Frederick H. Silver. (2018) The Importance of Collagen Fibers in Vertebrate Biology. Journal of Engineered Fibers and Fabrics 4:2, pages 155892500900400.
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Ronald K. June & David P. Fyhrie. (2008) Molecular NMR T2 values can predict cartilage stress-relaxation parameters. Biochemical and Biophysical Research Communications 377:1, pages 57-61.
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F.H. Silver & W.J. Landis. 2008. Collagen. Collagen 133 154 .
Rajesh K. Uthamanthil, Ryland B. Edwards, Yan Lu, Paul A. Manley, Kyriacos A. Athanasiou & Mark D. Markel. (2006) In vivo study on the short-term effect of radiofrequency energy on chondromalacic patellar cartilage and its correlation with calcified cartilage pathology in an equine model. Journal of Orthopaedic Research 24:4, pages 716-724.
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L.P. Li, W. Herzog, R.K. Korhonen & J.S. Jurvelin. (2005) The role of viscoelasticity of collagen fibers in articular cartilage: axial tension versus compression. Medical Engineering & Physics 27:1, pages 51-57.
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Frederick H. Silver, Gino Bradica & Alfred Tria. (2004) Do changes in the mechanical properties of articular cartilage promote catabolic destruction of cartilage and osteoarthritis?. Matrix Biology 23:7, pages 467-476.
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William J Landis & Frederick H Silver. (2002) The structure and function of normally mineralizing avian tendons. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology 133:4, pages 1135-1157.
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Frederick H. Silver, Gino Bradica & Alfred Tria. (2002) Elastic energy storage in human articular cartilage: estimation of the elastic modulus for type II collagen and changes associated with osteoarthritis. Matrix Biology 21:2, pages 129-137.
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