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Lessmann, Birgit: Exploration of wavelet-based feature spaces in medical image analysis. 2007
Inhalt
List of Figures
List of Tables
Introduction
Current Challenges in Medical Image Processing
Increasing Size and Complexity of Datasets
Curse of Dimensionality
Semantic Gap
Applicability in Clinical Practice
Wavelet Analysis in Medical Image Processing
Materials
Medical Background: Tumours
Tumours and Tumour Development
Diagnostic Methods
Treatment
Database I: Microscopy Images of Meningiomas
Tumours of the Central Nervous System
Meningiomas
Acquisition of Microscopy Images
Database Characteristics
Database II: MR Images of Breast Lesions
Anatomy of the Female Breast
Lesions of the Breast
Diagnostic Methods for the Detection of Breast Cancer
Principle of MR Imaging
DCE-MRI for the Detection of Breast Lesions
Database Characteristics
Methods
Wavelet Analysis
From Fourier to Wavelet Analysis
Continuous and Discrete Wavelet Transform
Multiresolution Analysis
The Fast Wavelet Transform
Wavelet Transform in Higher Dimensions
Wavelet Bases
Software for Wavelet Applications
Methods of Dimension Reduction
Principal Component Analysis
Self Organizing Map
Software
Multiscale Analysis of Microscopy Images
Introduction
Image Domain
Pre-Processing of Colour Channels
Texture Features
Texture Features for Image Analysis
Texture Features Based on DWT
SOM-Based Exploration of the Feature Space
Visualisation Techniques for SOM Results
Training Procedure
Exploration Procedure
Applications of Results
Feature Selection
Interface for CBIR Systems
Choice of the Mother Wavelet
Discussion and Conclusion
Multiscale Analysis of DCE-MR Images
Introduction
Analysis of Dynamic Characteristics
Motivation
Wavelet Analysis in Breast Cancer Diagnostics
Datasets
Exploration of Datasets
Application of Results - Segmentation
Choice of the Mother Wavelet
Discussion and Conclusion
Analysis of Morphologic Characteristics
Motivation
Approaches for Shape and Texture Characterisation
Datasets
Edge-Detection Using DWT
Texture-Filtering Using DWT
Shape and Texture Descriptor
Exploration of the Descriptors
Applications of Results
Discussion and Conclusion
Conclusion
Motivation of this Work
Summary and Results
Benefits and Limitations
Bibliography
Appendix
Quantum-mechanical Description of MR
The Nuclear Spin
Spin Excitation
The Magnetic Momentum