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Titlebook: Biomechanical Models for Soft Tissue Simulation; Walter Maurel,Daniel Thalmann,Nadia Magnenat Thalm Book 1998 Springer-Verlag Berlin Heide

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Resolution Methods, methods are necessary to obtain temporal descriptions of the state variables as required for the simulation. The assumption of complete linearity is a great advantage because it allows the solution of the complete dynamic problem, and leads to the exact response of the system. However, for a physic
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Application Perspectives, linearity of the material. However, applying biomechanical constitutive relations is likely to produce more realistic simulations. Given their empirical nature, these relations may not fit exactly with the general theoretical relations and resolution methods. This leads therefore to various individ
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Soft Tissue Physiology,nts, and skin. Their respective mechanical behavior may be expected to be related to their specific composition, structure, location, and function in the organism. However, for dynamic modeling, they may be satisfactorily approximated by macroscopic properties, as described in the next chapter.
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Resolution Methods,ewton—Raphson method. Basics of these methods are presented in this chapter for helping to understand how complex non-linear deformation processes and material constitutive relations may be applied to soft tissue simulation.
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ded in developing: • a prototype visual prosthesis linked to the optic nerve (MIVIP) • implantable blood micro-pumps (IMALP) • new low-power pacemakers and defibrillators (HIPOCRA T) • new high-quality 3D ultrasound images (NICE) • realistic computer models of the h978-3-662-03591-7978-3-662-03589-4
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Kooperation und Kompetition im Videospielnts, and skin. Their respective mechanical behavior may be expected to be related to their specific composition, structure, location, and function in the organism. However, for dynamic modeling, they may be satisfactorily approximated by macroscopic properties, as described in the next chapter.
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Kooperation und Kompetition im Videospiel of the available relations. The purpose of this chapter is therefore to remind the theoretical concepts of stress, strain, large deformations, elasticity, and viscoelasticity, with particular attention to their physical meaning.
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