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Titlebook: 3D Imaging in Medicine; Algorithms, Systems, Karl Heinz Höhne,Henry Fuchs,Stephen M. Pizer Conference proceedings 1990 Springer-Verlag Berl

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期刊全称3D Imaging in Medicine
期刊简称Algorithms, Systems,
影响因子2023Karl Heinz Höhne,Henry Fuchs,Stephen M. Pizer
视频video
学科分类NATO ASI Subseries F:
图书封面Titlebook: 3D Imaging in Medicine; Algorithms, Systems, Karl Heinz Höhne,Henry Fuchs,Stephen M. Pizer Conference proceedings 1990 Springer-Verlag Berl
影响因子The visualization of human anatomy for diagnostic, therapeutic, and educational pur­ poses has long been a challenge for scientists and artists. In vivo medical imaging could not be introduced until the discovery of X-rays by Wilhelm Conrad ROntgen in 1895. With the early medical imaging techniques which are still in use today, the three-dimensional reality of the human body can only be visualized in two-dimensional projections or cross-sections. Recently, biomedical engineering and computer science have begun to offer the potential of producing natural three-dimensional views of the human anatomy of living subjects. For a broad application of such technology, many scientific and engineering problems still have to be solved. In order to stimulate progress, the NATO Advanced Research Workshop in Travemiinde, West Germany, from June 25 to 29 was organized. It brought together approximately 50 experts in 3D-medical imaging from allover the world. Among the list of topics image acquisition was addressed first, since its quality decisively influences the quality of the 3D-images. For 3D-image generation - in distinction to 2D­ imaging - a decision has to be made as to which objects cont
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Automotive Batteries as Anomaly Detectorscuts, prosthesis, scalpels, and radiation beams. Four approaches for intermixing geometric models with sampled 3D medical data are presented. Details are provided on a hybrid approach that employs a Z-merging algorithm.
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https://doi.org/10.1007/978-3-031-19278-4 all available anatomic information. Knowledge-based analysis has produced some preliminary results but must be considered still in its infancy. Novel ideas for describing and representing natural structures in conjunction with AI tools are needed for generally applicable analysis methods.
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https://doi.org/10.1007/978-3-031-19278-4xis of symmetry and another based on flow lines in the intensity surface. A system for interactive object definition using this approach is described, and the use of this approach on a variety of medical images is evaluated. Generalizations of these descriptions and the interactive object definition tool to 3D are discussed.
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Lin Zhang,Mengyu Liu,Fanxin Kongzation approach is proposed which has been designed according to the principles of robustness, user-friendliness and clinical practicality. It includes measurement techniques for the acquisition of flow-compensated angiographic datasets and T1-weighted tissue volumes as well as image processing methods operating on the ray-tracing principle.
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Front Matterutilized to reliably diagnose or exclude early disease, decrease the cost of workup and radiation to patients. Barium radiography is more sensitive in the demonstration of early mucosal disease than CT or MR and should be done in the patient with a high clinical suspicion of disease with a negative
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