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Titlebook: Biomechanics: Basic and Applied Research; Selected Proceedings G. Bergmann,R. Kölbel,A. Rohlmann Conference proceedings 1987 Martinus Nijho

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楼主: CLOG
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Comparison of Optoelectronic and Film Based Kinematic Data in Dynamic Biomechanical Evaluation of Bacting on the musculoskeletal system of the human body. Postural effects due to gravity can be described by static biomechanical models (e.g. 2, 8). However, static models do not take account of the inertial forces and torques induced by acceleration, which have been found to increase the peak load o
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Instantaneous Helical Axis Estimation Via Natural, Cross-Validated Splines a clear insight in the relation between kinematics and joint geometry. Because of its geometric simplicity, a better picture can be obtained by means of the . (IHA), also known as the instantaneous screw axis, twist axis, or axis of rotation. At each moment in time, joint motion is seen as the move
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Speckle Interferometry: A Technique to Investigate Deformations in the Femoral Bonebalmed human femoral bones. The bones were measured under varying loads and other conditions. It was shown that the magnitude and direction of displacement could be ascertained at selected points and the strain between any two points could be calculated. The present findings differ from those derive
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An Automatic Method to Evaluate Goodness of Muscular Work During Human Locomotionch coordination plays a basic role in order to reduce the amount of energy wasted during movement, the objective evaluation of muscular work behaviour provides a useful contribution to plan training procedures or physiokinetic treatments devoted to improve the efficiency of a given performance in sp
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Quantification of Skin Displacement in the Walking Horseell known that during movement the skin shifts over the underlying bone, a biological error is inevitably introduced by this procedure. A method is presented for quantitative determination of skin movement over the underlying skeletal structures during normal locomotion of the walking horse. The pri
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Biomechanics of Total Knee Replacementome of these requirements will be discussed in this article. The first stage is to identify and quantify the present status, particularly the strong and weak points. This is done by a review from our own institutional data on retrieved total knees and clinical follow-ups (2,3,4,5).
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Cardiovascular Biomechanicsl forces overrule viscous forces, after each heartbeat a pressure-flow wave is guided down to the smallest arteries. At the level of arterioles (diameters 15–100 μm) viscous forces exceed inertial forces, causing attenuation of the pressure wave. At this level flow regulation takes pace by controlli
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