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Titlebook: Visualization in Medicine and Life Sciences; Lars Linsen,Hans Hagen,Bernd Hamann Conference proceedings 2008 Springer-Verlag Berlin Heidel

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BioBrowser — Visualization of and Access to Macro-Molecular Structures possible (after identifying yourself by a login procedure of course) to query, to change, or to add some information remotely by just using the 3D model of the molecule. All these actions are performed on sub structures of the molecules. These can be selected either by an easy query language or by just picking them in th 3D model with the mouse.
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Segmenting Gene Expression Patterns of Early-stage Drosophila Embryosrn segmentation methods, such as thresholding and edged-detection-based methods, which we have adapted to 3D pattern segmentation. We show that such automatic strategies can be improved to obtain better segmentation results by user interaction and additional post-processing steps.
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Towards Automatic Generation of 3D Models of Biological Objects Based on Serial Sectionsree-dimensional surface models facilitate the visual analysis of 3D anatomy. They also form a basis for standardized anatomical atlases that allow researchers to integrate, accumulate and associate heterogeneous experimental information, like functional or gene-expression data, with spatial or even
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A Topological Approach to Quantitation of Rheumatoid Arthritisronic conditions such as rheumatoid arthritis of the knee. Since inflammation is confined to a thin irregularly shaped region called the synovial capsule it is necessary to segment a suitable approximation of the capsule, then compute quantitative measurements within the segmented region. We report
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3D Visualization of Vasculature: An Overviewhe computational effort to create the visualizations, in the accuracy with respect to the underlying image data and in the visual quality of the result. In this overview, we compare 3D visualization methods and discuss their applicability for diagnosis, therapy planning and educational purposes. We
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Towards a Virtual Echocardiographic Tutoring Systemof the human heart, based on cubic B-Splines and wavelets facilitating the extraction of arbitrarily detailed anatomical boundaries. A dedicated ontology framework the model is embedded into enabling efficient (meta-)data management as well as the automatic generation of (e.g. pathologic) heart inst
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