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Titlebook: Computer Animation and Simulation ’97; Proceedings of the E Daniel Thalmann,Michiel Panne Conference proceedings 1997 Springer-Verlag/Wien

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https://doi.org/10.1007/978-3-7091-6874-5Dynamics; Spline; animation; computer animation; graphics; model; modeling; rendering; simulation; visualizat
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978-3-211-83048-2Springer-Verlag/Wien 1997
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https://doi.org/10.1007/b104820lation techniques, eager to adapt motion to the specific environment in which it takes place. This paper performs a first step towards this goal, by computing and analyzing the internal actuator forces involved when the human figure performs specific walk motions. The computations rely on a robust s
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https://doi.org/10.1007/b104820t a model which simulates the skin deformation based on a biomechanic model and generates dynamic wrinkles rendered with texture image. The biomechanical model considers the skin as a membrane undergoing large deformations and puts the local coordinate system of each triangle element to its principa
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https://doi.org/10.1007/b104820ical formulation of B-spline solids, we describe how to quickly display and modulate their shapes. We apply our ideas to muscle modelling and provide techniques for initial shape definition and subsequent shape deformation. Data-fitting techniques are developed to build muscles from profile curves o
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https://doi.org/10.1007/b104820 inter-particle potential is replaced by a little known potential theory originally formulated by Fr. Roger Boscovich in 1765. This, multi rest-point, approach yields elegant solutions for problems which have proved difficult to address using alternative interparticle potentials (e.g. permanent plas
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