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Yongjie Zhang | Akateeminen Kirjakauppa

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Image-Based Geometric Modeling and Mesh Generation
Tekijä: Yongjie Zhang (Jessica)
Kustantaja: Springer (2012)
Saatavuus: Noin 17-20 arkipäivää
EUR   97,90
Computational Modeling of Objects Presented in Images: Fundamentals, Methods, and Applications - 4th International Conference, C
Tekijä: Yongjie Jessica Zhang; João Manuel R.S. Tavares
Kustantaja: Springer International Publishing AG (2014)
Saatavuus: Noin 17-20 arkipäivää
EUR   49,60
Geometric Modeling and Mesh Generation from Scanned Images
Tekijä: Yongjie Jessica Zhang
Kustantaja: Taylor & Francis Ltd (2020)
Saatavuus: | Arvioimme, että tuote lähetetään meiltä noin 1-3 viikossa
EUR   65,00
Mesh Processing in Medical Image Analysis 2012 - MICCAI 2012 International Workshop, MeshMed 2012, Nice, France, October 1, 2012
Tekijä: Joshua A. Levine; Rasmus R. Paulsen; Yongjie Zhang
Kustantaja: Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2012)
Saatavuus: Noin 17-20 arkipäivää
EUR   45,80
Geometric Modeling and Mesh Generation from Scanned Images
Tekijä: Yongjie Jessica Zhang
Kustantaja: Taylor & Francis Inc (2016)
Saatavuus: Noin 13-16 arkipäivää
EUR   155,90
Image-Based Geometric Modeling and Mesh Generation
Tekijä: Yongjie Zhang (ed.)
Kustantaja: Springer (2016)
Saatavuus: Noin 17-20 arkipäivää
EUR   97,90
    
Image-Based Geometric Modeling and Mesh Generation
97,90 €
Springer
Sivumäärä: 301 sivua
Asu: Kovakantinen kirja
Painos: 2013
Julkaisuvuosi: 2012, 03.07.2012 (lisätietoa)
Kieli: Englanti
As a new interdisciplinary research area, “image-based geometric modeling and mesh generation” integrates image processing, geometric modeling and mesh generation with finite element method (FEM) to solve problems in computational biomedicine, materials sciences and engineering. It is well known that FEM is currently well-developed and efficient, but mesh generation for complex geometries (e.g., the human body) still takes about 80% of the total analysis time and is the major obstacle to reduce the total computation time. It is mainly because none of the traditional approaches is sufficient to effectively construct finite element meshes for arbitrarily complicated domains, and generally a great deal of manual interaction is involved in mesh generation.



This contributed volume, the first for such an interdisciplinary topic, collects the latest research by experts in this area. These papers 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 first for such an interdisciplinary topic, collectsthe latest research by experts in this area. These papers 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 first for such an interdisciplinary topic, collects the latest research by experts in this area. These papers 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 first for such an interdisciplinary topic, collects the latest research by experts in this area. These papers 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.

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