303 | -- | 0 | Suzanne M. Shontz, Yongjie Zhang. IMR19 2010 - special journal issue of engineering with computers - preface |
305 | -- | 318 | Yixun Liu, Panagiotis A. Foteinos, Andrey N. Chernikov, Nikos Chrisochoides. Mesh deformation-based multi-tissue mesh generation for brain images |
319 | -- | 329 | Timothy J. Tautges, Rajeev Jain. Creating geometry and mesh models for nuclear reactor core geometries using a lattice hierarchy-based approach |
331 | -- | 344 | Jonathan R. Bronson, Joshua A. Levine, Ross T. Whitaker. Particle systems for adaptive, isotropic meshing of CAD models |
345 | -- | 359 | Jin Qian, Yongjie Zhang. Automatic unstructured all-hexahedral mesh generation from B-Reps for non-manifold CAD assemblies |
361 | -- | 373 | Xiangmin Jiao, Duo Wang. Reconstructing high-order surfaces for meshing |
375 | -- | 389 | Xinghua Liang, Yongjie Zhang. Matching interior and exterior all-quadrilateral meshes with guaranteed angle bounds |
391 | -- | 408 | Eloi Ruiz-Gironés, Xevi Roca, Josep Sarrate. The receding front method applied to hexahedral mesh generation of exterior domains |
409 | -- | 418 | Boris N. Azarenok. 2D structured grid generation method producing a mesh with prescribed properties near boundary |
419 | -- | 429 | Patrick M. Knupp. Introducing the target-matrix paradigm for mesh optimization via node-movement |
431 | -- | 450 | Jibum Kim, Shankar Prasad Sastry, Suzanne M. Shontz. A numerical investigation on the interplay amongst geometry, meshes, and linear algebra in the finite element solution of elliptic PDEs |
451 | -- | 460 | Lennard Kamenski. A study on using hierarchical basis error estimates in anisotropic mesh adaptation for the finite element method |