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Titlebook: Biomedical Simulation; Third International Matthias Harders,Gábor Székely Conference proceedings 2006 Springer-Verlag Berlin Heidelberg 20

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Hierarchical Multi-resolution Finite Element Model for Soft Body Simulationnite elements. The object surface can be used for rendering and to apply boundary conditions..Compared with traditional finite element approaches, our method dramatically simplifies the task of volume meshing in order to facilitate the using of patient specific models, and increases the propagation of the deformations.
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Real-Time Simulation for Global Deformation of Soft Tissue Using Deformable Centerline and Medial Redel, to simulate large motion and global deformation of a 3D tube like object; (2) applying a simplified algorithm which reconstructs the soft tissue surface by the medial representation method and reduces the complexity of a 3D problem.
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The Framework for Real-Time Simulation of Deformable Soft-Tissue Using a Hybrid Elastic Modellevel as well as the local region by introducing the concepts of the angular spring, the return spring and the local deformation concept. A model based on real clinical data using a segmented left kidney and a collision detection demo are presented as an example in our case study.
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Bundesrat und Landesparlamente,mpute from the skin position a deformation field to the internal organs that takes mechanical properties of the breathing into account. Finally, we show on human data that our simulation model can provide a prediction of several organ positions (liver, kidneys, lungs) at 14 Hz with an accuracy within 7 mm.
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