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Title 3D imaging : theory, technology and applications / Emerson H. Duke and Stephen R. Aguirre, editors
Published New York : Nova Science Publishers, [2009]
©2009
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Description 1 online resource (xiii, 325 pages) : illustrations (some color)
Series Computer Science, Technology and Applications
Computer science, technology and applications.
Contents ""3D IMAGING: THEORY, TECHNOLOGY AND APPLICATIONS ""; ""3D IMAGING: THEORY, TECHNOLOGY AND APPLICATIONS ""; ""CONTENTS""; ""PREFACE""; ""3D IMAGING OF ABDOMINAL AORTIC ANEURYSMS: TECHNIQUES AND APPLICATIONS ""; ""ABSTRACT""; "" Background""; ""Methods""; ""Results""; ""Conclusion""; ""1. INTRODUCTION ""; ""1.1 Incidence and Current Opinions ""; ""1.2 Medical Imaging""; ""2. 3D RECONSTRUCTION FROM CT SCANS ""; ""3. APPLICATIONS OF AAA 3D RECONSTRUCTIONS ""; ""4. NUMERICAL INVESTIGATIONS ""; ""4.1 Pre-Operative Planning for EVAR""; ""4.2 Stent-Graft Design""
""1.3.2 Holographic phase-contrast method (the method of holographic addition and subtraction in an interference fringe) """"1.3.3 The method of holographic interferometry in fringes of finite width ""; ""1.3.4 Comparison of the possibilities of the holographic methods for solution the problem of obtaining 3D images of phase microobjects ""; ""1.4 Digital Holographic Interference Microscope ""; ""2. APPLICATION OF THE DIGITAL HOLOGRAPHIC MICROSCOPY FOR PHASE MICROOBJECTS STUDY""; ""2.1 DHIM Study of The 3D Morphology of Blood Erythrocytes""; ""2.2 DHIM Study of Thin Transparent Films ""
""3D IMAGING OF PHASE MICROSCOPIC OBJECTS BY DIGITAL HOLOGRAPHIC METHOD""""ABSTRACT ""; ""INTRODUCTION ""; ""1. CLASSICAL AND HOLOGRAPHIC METHODS OF PHASE MICROOBJECTS VISUALIZATION ""; ""1.1 Classical Methods of Phase Microscopic Objects Visualization ""; ""1.1.1 Zernike phase-contrast method""; ""1.1.2 The method of interference contrast ""; ""1.2 Holography as the Method of Recoding and Reconstruction of Waves ""; ""1.3 Holographic Methods of Phase Microscopic Objects Visualization ""; ""1.3.1 History of holographic microscopy ""
""4.3 Optimum Smoothing of 3D Models """"4.4 Determining AAA Asymmetry""; ""4.5 Improving Rupture Predictions""; ""4.6 Pre and Post-Operative Biomechanics""; ""4.7 Computer-Aided Design and Computer-Aided Manufacture ""; ""5. EXPERIMENTAL INVESTIGATIONS ""; ""5.1 In-Vitro Models ""; ""5.2 The Photoelastic Method ""; ""5.3 Improving Experimental Materials""; ""5.3.1 Material Selection, Development and Testing ""; ""5.3.2 Application to 3D Geometries ""; ""5.4 Experimental Rupture Testing""; ""6. CONCLUSION ""; ""ACKNOWLEDGMENTS ""; ""REFERENCES ""
""Conclusion""""references ""; ""electron microscope tomography in structural biology ""; ""abstract ""; ""introduction""; ""data acquisition""; ""pre-processing: alignment and restoration ""; ""tomographic reconstruction""; ""post-processing and interpretation of tomograms ""; ""an illustrative example: emt of vaccinia virus ""; ""high performance computing in emt ""; ""software tools for emt ""; ""conclusion ""; ""acknowledgments""; ""references""; ""three-dimensional imaging and processing""; ""abstract ""; ""1. introduction ""; ""2. current status and problem ""
Bibliography Includes bibliographical references and index
Notes Print version record
Subject Three-dimensional imaging in biology.
Three-dimensional imaging in medicine.
Three-dimensional imaging -- Industrial applications.
Form Electronic book
Author Aguirre, Stephen R.
Duke, Emerson H.
LC no. 2009048897
ISBN 1611229227 (electronic bk.)
9781611229226 (electronic bk.)