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Titlebook: Collagen; Structure and Mechan Peter Fratzl Book 2008 Springer-Verlag US 2008 Biomaterial.Optische Kohärenztomografie.biomimetic collagen t

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Tendons and Ligaments: Structure, Mechanical Behavior and Biological Function,ng locomotion, conserving muscle work and reducing the metabolic energy cost of locomotor movement. Tendon architecture greatly affects the storage and recovery of elastic strain energy, with long, thin tendons favoring greater strain energy/volume (and weight) of the tendon. It is likely that other
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The Extracellular Matrix of Skeletal and Cardiac Muscle, mechanically linking adjacent muscle fibers so as to coordinate their length changes and keep their sarcomere lengths uniform. Especially in series-fibered muscles, shear through the thickness of the endomysium is a key mechanism for transmission of forces generated by contraction of muscle fibers.
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The Cornea and Sclera,re positioned with respect to each other with a high degree of lateral order. This exquisite arrangement causes destructive interference of scattered light and constructive interference of directly transmitted light throughout the visible wavelengths. As a lens, the cornea also has to be precisely c
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Gerhard Oswald,Michael Kleinemeierd ligaments, to skin, cornea, bone and dentin. These tissues have quite different mechanical requirements, some need to be elastic or to store mechanical energy and others need to be stiff and tough. This shows the versatility of collagen as a building material. While in some cases (bone and dentin)
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Marek Kowalkiewicz,Niz Safrudin,Bert Schulzeed by a 65–67 nm axial periodicity. Collagen fibrils are substantial constituents of skin, tendon, bone, ligament, cornea, and cartilage, where the fundamental tensile properties of the fibril are finely tuned to serve bespoke biomechanical, and less well understood structural signaling roles..Many
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