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Titlebook: Handbook of Biomedical Imaging; Methodologies and Cl Nikos Paragios,James Duncan,Nicholas Ayache Book 2015 Springer Science+Business Media

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https://doi.org/10.1007/978-3-531-91650-7apter, we provide an overview of the main components of this technique, illustrate recent efforts in its validation and sensitivity analysis and discuss preliminary clinical studies and future research directions.
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https://doi.org/10.1007/978-3-662-45366-7he scene and by the large variety of clinical applications. Maximization of mutual information of corresponding voxel intensities allows for fully automated registration of multimodality images without need for segmentation or user intervention, which makes it well suited for routine clinical use in
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Statistical Computing on Non-Linear Spaces for Computational Anatomyolation, filtering and anisotropic diffusion on fields of geometric features. This computational framework is illustrated with the analysis of the shape of the scoliotic spine and the modeling of the brain variability from sulcal lines where the results suggest new anatomical findings.
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Image-based haemodynamics simulation in intracranial aneurysmsapter, we provide an overview of the main components of this technique, illustrate recent efforts in its validation and sensitivity analysis and discuss preliminary clinical studies and future research directions.
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https://doi.org/10.1007/978-3-663-05122-0hematical framework for knowledge representation, information modeling at different levels, fusion of heterogeneous information, reasoning and decision making. In this chapter, we provide an overview of the potential of this theory in medical imaging, in particular for classification, segmentation a
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,Helium — Grundlegende Eigenschaften,tutorial of level sets towards a flexible frame partition paradigm that could integrate edge-drive, regional-based and prior knowledge to object extraction. The central idea behind such an approach is to perform image partition through the propagation planar curves/surfaces. To this end, an objectiv
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Zerlegung wasserstoffreicher Gasgemische,tation of machine learning concepts and tools, including Support Vector Machine (SVM), kernel ridge regression and kernel PCA, we present an application of these tools to the prediction of Computed Tomography (CT) images based on Magnetic Resonance (MR) images.
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