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Titlebook: Biomechanics of the Wrist Joint; Kai-Nan An,Richard A. Berger,William P. Cooney Book 1991 Springer-Verlag New York, Inc. 1991 biomechanics

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https://doi.org/10.1007/978-90-313-6635-4rength or weakness as noted clinically after trauma (Fahrer 1981; Taleisnik 1985; Taleisnik 1976). Biomechanical investigations generally examined ligament behavior indirectly as an integral part of general wrist biomechanics, such as noting the angle of wrist deflection due to specific loading or p
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Van indicatiestelling tot behandelfocusotential force which the muscle can possibly generated depends on the size and architecture of the muscle. In addition, the potential force generation is a function of the velocity of shortening or lengthening and the muscle length at the time of contraction. Several important biomechanics parameter
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Kinematic Analysis,important role in the function of this system. To determine these mechanical factors, motions and loads must be quantitated in precise mechanical terms. Kinematics is the study of body motion without reference to the forces causing this motion. This fundamental branch of dynamics finds a challenging
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Force Analysis,are a result of those externally applied and those exerted by the wrist and finger flexor and extensor muscle-tendon units. The combination of eight semi-rigid carpal bones located between the radius, ulna, and five metacarpal bones; compressive load bearing tissues varying in compliance from cartil
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Joint Contact Area and Pressure,he contact areas and pressures in cadaver wrists in a variety of normal, simulated post-traumatic, and surgically treated conditions. The results of these studies have added to our knowledge base and provided clinically relevant information on the normal functional mechanics of the wrist as well as
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