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Titlebook: Clinical Biomechanics and Related Research; Yasusuke Hirasawa (Professor and Chairman),Clement Conference proceedings 1994 Springer Japan

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Trevor Richardson,Indranil Sur,Heni Ben Amorose of this study was to analyze the effect of small dislocations of the proximal insertion point with special regard to the ratio of rolhng and sliding. Using a specimen, the insertion sites of the cruciate ligaments and the geometric shapes of the femur condyle and the tibia plateau were registere
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https://doi.org/10.1007/978-3-319-28872-7ic and impact compression tests of subchondral cancellous bone at nominal strain rates from 0.008 to 25 s.. The mechanical energy-absorbing mechanisms of cancellous bone could be roughly classified into two types: viscoelastic hysteresis and release of elastic energy from microfractures of the trabe
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Dynamic Viscoelastic Properties of Cortical Bone and Calluss (G″), and dynamic loss tangent (tan δ) were measured under tensile and compressive strain at frequencies ranging from 0.1 to 70 Hz at body temperature. The initial strain was a 2000 microstrain, and the dynamic strain was set up at a 500 microstrain in all specimens. In wet cortical bone, G′, G″,
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