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TUD MedVis Overview http://visualisation.tudelft.nl/MedVis/ http://medvis.org/
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TUD MedVis Overview 1 associate prof., 1 assistant prof., 5 PhD students, 6 M.Sc. students. Medical Visualisation application areas focused on: medical research (neuro, longitudinal, molecular) diagnosis and treatment planning Cooperating with academic hospitals in NL, Philips Medical Systems, TU/e
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Diffusion Tensor Imaging Able to image neuronal fibre bundles in the brain Full-brain tracking yields over-complex visualisations
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Diffusion Tensor Imaging Our approach: real-time selection – 3 million fibres / s Reproducible, fast and intuitive
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DTI + function MRI (fMRI) Test application: tumor resection with fMRI and DTI Queries and feedback: distance to tumor, bundles by activation area, etc.
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Multi-Field Medical Visualisation Multiple measurements over the same domain Examples: inherently multi-modality (PET-CT), registered data (multi-timepoint) 1. Comparative visualisation in clinical studies:
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Multi-Field Medical Visualisation Quantification-driven visualisation 2. Integrating SciVis and Infovis techniques:
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Planning and guidance for orthopaedic surgery Shoulder replacement is hard Results in loosening and revision!
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Planning and guidance for orthopaedic surgery Situation improved with Computer Assisted Surgery techniques. Our prototype:
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Polyp detection in Virtual Colonoscopy Detection of polyps in VC
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Polyp detection in Virtual Colonoscopy Apply vector field visualisation techniques! Maximum curvature directionMinimum curvature direction
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Polyp detection in Virtual Colonoscopy Surface constrained streamlines: extra features for classifation of true positive polyps.
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Molecular Imaging Bioluminescence imaging + CT and MRI Genetically modified mice Tracking cancerous cell clusters over time
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