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  • 1
    Book
    Book
    Boston [u.a.] :Birkhäuser,
    UID:
    almahu_BV012177387
    Format: X, 216 S. : graph. Darst.
    ISBN: 0-8176-3897-0 , 3-7643-3897-0
    Series Statement: Applied and numerical harmonic analysis
    Language: English
    Subjects: Computer Science
    RVK:
    Keywords: Bildverarbeitung ; Computergrafik ; Multivariate Daten ; Visualisierung ; Computergrafik ; Graphentheorie ; Topologie
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Book
    Book
    Boston ; Basel ; Berlin : Birkhäuser
    UID:
    b3kat_BV012885861
    Format: XXII, 479 S. , Ill., graph. Darst.
    ISBN: 3764341017 , 0817641017
    Series Statement: Applied and numerical harmonic analysis
    Note: Literaturangaben
    Language: German
    Subjects: Computer Science
    RVK:
    Keywords: Computertomografie ; Bildrekonstruktion ; Diskrete Mathematik ; Diskrete Tomografie ; Algorithmus ; Lehrbuch
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  • 3
    UID:
    almahu_9947363007702882
    Format: XXII, 479 p. , online resource.
    ISBN: 9781461215684
    Series Statement: Applied and Numerical Harmonic Analysis,
    Content: The visualization, construction, and reconstruction of multidimensional images are of intense interest in science and engineering today, and discrete tomography—which deals with the special case in which the object to be reconstructed has a small number of possible values—offers some significant new analytical and computational tools. Discrete Tomography: Foundations, Algorithms, and Applications provides a critical survey of new methods, algorithms, and select applications that are the foundations of multidimensional image construction and reconstruction. The survey chapters, written by leading international authorities, are self-contained adn present the latest research and results in the field. The book covers three main areas: important theoretical results, available algorithms to utilize for reconstruction, and key applications where new results are indicative of greater utility. Following a thorough historical overview of the field, the book provides a journey through the various mathematical and computational problems of discrete tomography. This is followed by a section on numerous algorithmic techniques that can be used to achieve real reconstructions from image projections. Topics and Features: * historical overview and summary chapter * uniqueness and complexity in discrete tomography * probabilistic modeling of discrete images * binary tomography using Gibb priors * discrete tomography on the 3-D torus and crystals * binary steering * 3-D tomographic reconstruction from sparse radiographic data * symbolic projections The book is an essential resource for the latest developments and tools in discrete tomography. Professionals, researchers, and practitioners in mathematics, computer imaging, scientific visualization, computer engineering, and multidimensional image processing will find the book an authoritative guide and reference to current research, methods, and applications. .
    Note: Foundations -- Discrete Tomography: A Historical Overview -- Sets of Uniqueness and Additivity in Integer Lattices -- Tomographic Equivalence and Switching Operations -- Uniqueness and Complexity in Discrete Tomography -- Reconstruction of Plane Figures from Two Projections -- Reconstruction of Two-Valued Functions and Matrices -- Reconstruction of Connected Sets from Two Projections -- Algorithms -- Binary Tomography Using Gibbs Priors -- Probabilistic Modeling of Discrete Images -- Multiscale Bayesian Methods for Discrete Tomography -- An Algebraic Solution for Discrete Tomography -- Binary Steering of Nonbinary Iterative Algorithms -- Reconstruction of Binary Images via the EM Algorithm -- Compact Object Reconstruction -- Applications -- CT-Assisted Engineering and Manufacturing -- 3D Reconstruction from Sparse Radiographic Data -- Heart Chamber Reconstruction from Biplane Angiography -- Discrete Tomography in Electron Microscopy -- Tomography on the 3D-Torus and Crystals -- A Recursive Algorithm for Diffuse Planar Tomography -- From Orthogonal Projections to Symbolic Projections.
    In: Springer eBooks
    Additional Edition: Printed edition: ISBN 9781461271963
    Language: English
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  • 4
    Online Resource
    Online Resource
    Boston, MA :Birkhäuser Boston,
    UID:
    almahu_9947362824902882
    Format: X, 216 p. , online resource.
    ISBN: 9781461241362
    Series Statement: Applied and Numerical Harmonic Analysis
    Content: "La narraci6n literaria es la evocaci6n de las nostalgias. " ("Literary narration is the evocation of nostalgia. ") G. G. Marquez, interview in Puerta del Sol, VII, 4, 1996. A Personal Prehistory In 1972 I started cooperating with members of the Biodynamics Research Unit at the Mayo Clinic in Rochester, Minnesota, which was under the direction of Earl H. Wood. At that time, their ambitious (and eventually realized) dream was to build the Dynamic Spatial Reconstructor (DSR), a device capable of collecting data regarding the attenuation of X-rays through the human body fast enough for stop-action imaging the full extent of the beating heart inside the thorax. Such a device can be applied to study the dynamic processes of cardiopulmonary physiology, in a manner similar to the application of an ordinary cr (computerized tomography) scanner to observing stationary anatomy. The standard method of displaying the information produced by a cr scanner consists of showing two-dimensional images, corresponding to maps of the X-ray attenuation coefficient in slices through the body. (Since different tissue types attenuate X-rays differently, such maps provide a good visualization of what is in the body in those slices; bone - which attenuates X-rays a lot - appears white, air appears black, tumors typically appear less dark than the surrounding healthy tissue, etc. ) However, it seemed to me that this display mode would not be appropriate for the DSR.
    Note: 1 Cloning Flies on Sugar Cubes -- 1.1 What Is Our Game? -- 1.2 A Methodology for Extracting Object Boundaries -- 1.3 Flies in Flatland -- 1.4 Components Determined by Binary Relations -- 1.5 So, What Does a Flat Fly Do? -- 1.6 Back to the Cuberille -- 1.7 Algorithms for Fat Flies -- 1.8 Digraphs -- 1.9 So, What Can a Fat Fly Do? -- 1.10 Algorithms for Cloning Flies -- 1.11 An Efficient Implementation -- 1.12 Exercises -- 2 Enhancing the Cube -- 2.1 Why Study Noncubic Grids? -- 2.2 Other Spaces -- 2.3 Exercises -- 3 Digital Spaces -- 3.1 The Basic Definitions -- 3.2 Interiors and Exteriors -- 3.3 Connectedness in Digital Spaces -- 3.4 Isomorphisms between Digital Spaces -- 3.5 Exercises -- 4 Topological Digital Spaces -- 4.1 What Is a Topology? -- 4.2 Some Topological Digital Spaces -- 4.3 Many Digital Spaces Are Not Topological -- 4.4 Connectedness of Topological Interiors -- 4.5 Exercises -- 5 Binary Pictures -- 5.1 Digital Pictures -- 5.2 Fuzzy Segmentation -- 5.3 Boundaries in Binary Pictures -- 5.4 Jordan Pairs of Spel-Adjacencies -- 5.5 New Jordan Pairs from Old Ones -- 5.6 Exercises -- 6 Simply Connected Digital Spaces -- 6.1 N-Simply Connected Digital Spaces -- 6.2 Locally-Jordan Surfaces -- 6.3 Applications to Finding Jordan Pairs -- 6.4 1-Simply Connected Digital Spaces -- 6.5 Exercises -- 7 Jordan Graphs -- 7.1 The Theory of (Strong) Jordan Graphs -- 7.2 Jordan Surfaces -- 7.3 Spel-Manifolds -- 7.4 Exercises -- 8 Boundary Tracking -- 8.1 Tracking in Finitary 1-Simply Connected Spaces -- 8.2 Efficient Tracking of Boundary Elements -- 8.3 Boundary Tracking on Hypercubes -- 8.4 Proofs of the Boundary-Tracking Claims -- 8.5 Boundary Tracking in the FCC Grid -- 8.6 Pointers to Further Reading -- 8.7 Exercises -- Appendix List of Symbols -- References.
    In: Springer eBooks
    Additional Edition: Printed edition: ISBN 9781461286691
    Language: English
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