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Related lectures (20)
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Fourier Transforms in Tomography: Inversion Techniques
Covers the application of Fourier transforms in tomography, focusing on the Radon transform and its inversion techniques.
Medical Image Reconstruction: From Model-Based to Data-Driven
Explores the evolution of medical image reconstruction techniques, from classical methods to data-driven approaches using deep neural networks.
Fourier Transform Applications: Image Processing Basics
Covers image processing basics, Fourier transformation, convolution, cross-correlation, and 3D reconstruction using the Radon projection theorem.
Bone Imaging
Explores the significance of bone imaging in biomechanics, covering various modalities and techniques for image acquisition and reconstruction.
Tomography: Imaging by Sections
Covers the method of reconstructing 3D structures from 2D projections in various scientific fields.
X-ray Tomography: Fourier Slice Theorem
Delves into the Fourier Slice Theorem in X-ray tomography, explaining the relationship between 1-D and 2-D Fourier Transforms and techniques to enhance image quality.
Tomography: Imaging and Applications
Explores principles and applications of tomography, including 3D microscopy techniques and atomic-level material reconstruction.
Safe Occlusion-Aware Manipulation
Discusses safe, occlusion-aware manipulation for object reconstruction in confined spaces.
Chambres d'Amis: Reconstructing Private Spaces in Museums
Explores the reconstruction of private spaces in museums to engage the public with art.
Volumetric 3D Printing: Advances in Photopolymerization
Explores principles of volumetric 3D printing, photopolymerization, polymer importance, and chemical components in resins for stereolithography.