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- W2624587613 abstract "Collagen is the major structural fiber found in mammalian tissues It is a protein in the form of a triple helix that is found in several subfamilies the most abundant of which is the fiber forming group containing Types I II and III Type I collagen is found in tendons skin cornea bone lung and vessel walls This collagen is thought to give rise to the high tensile strengths of collagen fibers in tissues in addition it is actively involved in other physiologic processes such mechanotransduction However the non linear mechanical behavior and viscoelasticity of collagen fibers make analysis of the mechanical properties of tissues complicated Mechanistically during mechanical loading a tensional increase in the D period is observed with increasing strain that is associated with A Molecular elongation at the triple helical level of structure B Increases in the gap distance between the end of one triple helix and the start of the next one in the microfibril and C Molecular slippage The state of mechanical loading of tissues dictates the regulation of tissue metabolism by up or down regulating mechanotransduction through several mechanisms including the phosphorelay pathways In this paper we discuss the relationship between collagen hierarchical structure and its viscoelastic mechanical properties Using vibrational analysis and optical coherence tomography it is hoped that the mechanical properties of collagenous tissues can be studied in vivo in order to better understand tissue mechanics and to be better able to offer early diagnosis and differentiation of different disease states" @default.
- W2624587613 created "2017-06-15" @default.
- W2624587613 creator A5007354515 @default.
- W2624587613 date "2017-02-20" @default.
- W2624587613 modified "2023-09-26" @default.
- W2624587613 title "Viscoelastic Behavior of Allografts and Scaffolds Composed of Extracellular Matrices" @default.
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- W2624587613 doi "https://doi.org/10.15406/atroa.2017.02.00019" @default.
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