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Titlebook: Ligaments and Ligamentoplasties; L’Hocine Yahia Book 1997 Springer-Verlag Berlin Heidelberg 1997 biomechanics.biomimetics.development.fixa

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Artificial Materials and Structures for Extracellular Matrix Scaffolding of Orthopedic Tissues: A Re rejections, and uncertain long-term functioning. As a consequence, alternative materials and therapies have been investigated with the hope of benefiting from the advantages of living biological tissues or from those of artificial materials and structures.
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Mesomechanical Modeling of Living Soft Tissuesrmation as to that which occurs inside the tissue. On the other hand, the drawback of the micromechanical approach is that the microstructure of living tissues is so complicated that it is very difficult to describe the microscopic geometry and its changes and to correlate them with the macroscopic properties.
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The History of Ligament Substitutes ligament injuries and descriptions of the various repair and reconstruction procedures have continued to develop. Especially over the past 20 years this literature increased tremendously due to the development of new devices for injured ligaments.
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Reconstruction of Cruciate Ligaments Using a Synthetic Ligament of Polyethylene Terephthalate (Treviephthalate (Trevira-Hochfest 730) and meets all biological and material requirements suitable for cruciate ligament replacements [2, 3, 6–10]. The choice of this ligament followed the considerations and experiences discussed in Chaps. I.5 and II.5. Its biocompatibility has been confirmed by numerous tests and clinical follow-ups [1, 4–6, 10].
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Book 1997aments developed during the last decades. This approach is undertaken in an effort to better understand why artificial ligaments fail, to redefine design criteria, and stimulate the development of a new generation of more effective replacement devices.
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ficial ligaments developed during the last decades. This approach is undertaken in an effort to better understand why artificial ligaments fail, to redefine design criteria, and stimulate the development of a new generation of more effective replacement devices.978-3-642-64404-7978-3-642-60428-7
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Passive and Dynamic Stability of the Knee Jointablish the normal knee mechanics in order to prevent the articular degeneration process. The ligaments of the knee act as passive restraints to abnormal knee motion. They also provide some dynamic stability by stimulating the neuromuscular system through their sensory innervation.
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https://doi.org/10.1007/978-3-642-60428-7biomechanics; biomimetics; development; fixation; implant; instability; knee; knee joint; ligaments; mechanic
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