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Titlebook: Image-Based Geometric Modeling and Mesh Generation; Yongjie (Jessica) Zhang Book 2013 Springer Science+Business Media Dordrecht 2013 biome

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Image-Based Geometric Modeling and Mesh Generation
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Book 2013rs cover a broad range of topics, including medical imaging, image alignment and segmentation, image-to-mesh conversion, quality improvement, mesh warping, heterogeneous materials, biomodelcular modeling and simulation, as well as medical and engineering applications..This contributed volume, the fi
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Flexible Multi-scale Image Alignment Using B-Spline Reparametrization,tions, and the solution of the alignment model exists. The results on the existence and uniqueness of the solution for the ordinary differential equation derived from the finite element discretization of our flexible alignment model are established.
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Tetrahedral Image-to-Mesh Conversion Approaches for Surgery Simulation and Navigation,r due to the poor quality they exhibit. We also observed that the speed of the solver is very sensitive to mesh quality rather than to fidelity. For these reasons, we think that mesh generation should first try to produce high quality meshes, possibly sacrificing fidelity.
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A Combined Level Set/Mesh Warping Algorithm for Tracking Brain and Cerebrospinal Fluid Evolution ined level set/mesh warping algorithm to track the evolution of the ventricles in the hydrocephalic brain. Our combined level set/mesh warping method is successfully used to track the evolution of the brain ventricles in two hydrocephalic patients.
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High-Quality Multi-tissue Mesh Generation for Finite Element Analysis,aries. Experimental evaluation on CT and MRI atlases have shown that our algorithm produces watertight meshes consisting of elements of very good quality (all the dihedral angles were between 19 and 150 degrees) which makes our method suitable for finite element simulations.
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