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Titlebook: Biomechanics of Diarthrodial Joints; Volume I Anthony Ratcliffe,Savio L-Y. Woo,Van C. Mow Conference proceedings 1990 Springer Science+Busi

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Biomechanics and Morphology of the Medial Collateral and Anterior Cruciate Ligamentsy small loads. When the knee is subjected to large externally applied forces such as those that occur in sporting activities, excessive joint motion is restricted by the increasing stiffness of the ligament.
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Structure and Function of Normal and Healing Tendons and Ligamentsues is similar to rope-building; from the α chains in the collagen molecule itself up to the level of fibrils the principle is thus helicality that changes handedness on consecutive levels of organization. This arrangement, which is comparable to rope-tightening, renders stability and strength to th
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Biomechanics and Morphology of the Medial Collateral and Anterior Cruciate Ligamentslel to the axis of loading. When unloaded, the tissue has a characteristic crimp pattern. As the ligament is stretched, more collagen fibers are recruited to bear load and the collagen crimp pattern disappears (Viidik and Lewin 1966). This gradual recruitment of ligament fibers results in a nonlinea
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Biomechanics of the Anterior Cruciate Ligament and its Replacementsven, 1980,1988; Noyes et al, 1980). In fact, the ACL is probably . most commonly, and totally disrupted knee ligament (England, 1976; Eriksson, 1976; Feagin et al, 1976; Marshall and Rubin, 1977; Torg et al, 1976). ACL ruptures can also lead to meniscal tears (Noyes et al, 1983b), and in many patien
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