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Transition from viscous to elastic-based dependency of mechanical properties of self-assembled type I collagen fibers
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4
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Molecular basis for elastic energy storage in mineralized tendon
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Viscoelastic properties of human skin and processed dermis
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Viscoelasticity of the vessel wall: Role of collagen and elastic fibers
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Relationship among biomechanical, biochemical and cellular changes associated with osteoarthritis
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0037153007
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Viscoelastic properties of young and old human dermis: Evidence that elastic energy storage occurs in the flexible regions of collagen and elastin
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Silver, F.H., Seehra, P., Freeman, J.W., DeVore, D., Viscoelastic properties of young and old human dermis: Evidence that elastic energy storage occurs in the flexible regions of collagen and elastin, J. Applied Polymer Science, 86, 1978-1985, 2002.
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0036173119
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Elastic energy storage in human articular cartilage: Estimation of the elastic spring constant for type II collagen and changes associated with osteoarthritis
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Silver, F.H., Bradica, G., Tria, A., Elastic energy storage in human articular cartilage: estimation of the elastic spring constant for type II collagen and changes associated with osteoarthritis, Matrix Biology 21, 129-137, 2002.
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Viscoelastic properties of self-assembled type I collagen fibers: Molecular basis of elastic and viscousbehaviors
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Silver, F.H., Ebrahimi, A., Snowhill, P.B., Viscoelastic properties of self-assembled type I collagen fibers: Molecular basis of elastic and viscousbehaviors, Connective Tissue Research, 43, 1-12, 2002.
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Mechanical implications of the domain structureof fibrilforming collagens: Comparison of the molecular and fibrillar flexibility of -chains found in types I, II and III collagens
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Silver, F.H., Horvath, I., Foran, D.J., Mechanical implications of the domain structureof fibrilforming collagens: Comparison of the molecular and fibrillar flexibility of -chains found in types I, II and III collagens, J. Theoretical Biology, 216, 243-254, 2002.
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Mechanobiology of force transduction in dermis
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0142221955
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Mechanobiology of cartilage: How do internal and external stresses affect mechanochemical transduction and elastic energy storage
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Invited Review: Role of mechanophysiology in aging ofECM: Effects of changes in mechanochemical transduction
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Mechanical behavior of vessel wall: A comparative study of aorta, vena cava, and carotid artery
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Collagen self-assembly and development of matrix mechanical properties
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