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Detection of Architectural Distortion in Prior Mammograms via Analysis of Oriented Patterns
Authors:Rangaraj M. Rangayyan  Shantanu Banik  J.E. Leo Desautels
Affiliation:1.Department of Electrical and Computer Engineering, Schulich School of Engineering, University of Calgary;2.Department of Radiology, University of Calgary
Abstract:We demonstrate methods for the detection of architectural distortion in prior mammograms of interval-cancer cases based on analysis of the orientation of breast tissue patterns in mammograms. We hypothesize that architectural distortion modifies the normal orientation of breast tissue patterns in mammographic images before the formation of masses or tumors. In the initial steps of our methods, the oriented structures in a given mammogram are analyzed using Gabor filters and phase portraits to detect node-like sites of radiating or intersecting tissue patterns. Each detected site is then characterized using the node value, fractal dimension, and a measure of angular dispersion specifically designed to represent spiculating patterns associated with architectural distortion.Our methods were tested with a database of 106 prior mammograms of 56 interval-cancer cases and 52 mammograms of 13 normal cases using the features developed for the characterization of architectural distortion, pattern classification via quadratic discriminant analysis, and validation with the leave-one-patient out procedure. According to the results of free-response receiver operating characteristic analysis, our methods have demonstrated the capability to detect architectural distortion in prior mammograms, taken 15 months (on the average) before clinical diagnosis of breast cancer, with a sensitivity of 80% at about five false positives per patient.
Keywords:Medicine   Issue 78   Anatomy   Physiology   Cancer Biology   angular spread   architectural distortion   breast cancer   Computer-Assisted Diagnosis   computer-aided diagnosis (CAD)   entropy   fractional Brownian motion   fractal dimension   Gabor filters   Image Processing   Medical Informatics   node map   oriented texture   Pattern Recognition   phase portraits   prior mammograms   spectral analysis
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