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Titlebook: Biomechanics of Normal and Pathological Human Articulating Joints; Necip Berme,Ali E. Engin,Kelo M. Correia da Silva Book 1985 Martinus Ni

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0168-132X s not attempted here to present a complete treatise of each of these areas. Each chapter typically gives a review and a flavor of the subject matter, as well as978-94-010-8762-9978-94-009-5117-4Series ISSN 0168-132X
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https://doi.org/10.1007/978-981-19-0023-5ing down of bone or resorption of bone respectively. It is interesting to note that the lines of the trabeculae in the proximal femur are frequently associated with the lines of principal stress obtained by various means related to the loading of the head of femur and the greater trochanter. Rarely
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https://doi.org/10.1007/978-981-19-0023-5eplacements for the upper limb significantly more complicated than those for the lower limb. Although a significant amount of research has been carried out on upper limb biomechanics, particularly in the kinematics and myoelectric activities of its muscles, our knowledge of upper limb joints is by n
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https://doi.org/10.1007/978-3-030-05906-4 equations. These constraint conditions include the fact that soft tissues only transmit tensile loads while the articulating surfaces can only be subjected to compression. Electromyographic data from the muscles crossing the joint also provide additional information for the joint modeling effort. T
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Clinical Aspects of Human Articulating Joints,. If damaged, most of the tissues making up a joint have the possibility to repair themselves. In more differentiated cells this function is less pronounced. Of all the structures making up a joint, cartilage is the most vulnerable tissue and the least able to repair itself. Practically all serious
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