DocumentCode :
2226485
Title :
Detecting microcalcification clusters in digital mammograms using combination of wavelet and neural network
Author :
Rezai-rad, Gholamali ; Jamarani, Sepehr
Author_Institution :
Tech. Res. & Dev. Dept, Islamic Azad Univ., United Arab Emirates
fYear :
2005
fDate :
26-29 July 2005
Firstpage :
197
Lastpage :
201
Abstract :
This paper presents an approach for detecting microcalcification in digital mammograms employing combination of artificial neural networks (ANN) and wavelet-based subband image decomposition. The microcalcifications correspond to high-frequency components of the image spectrum, detection of microcalcifications is achieved by decomposing the mammograms into different frequency subbands, suppressing the low-frequency subband, a and finally, reconstructing the mammogram from the subbands containing only high frequencies. We use these results as an input of neural network for classification. The neural network contains one input, two hidden and one output layers. Layers have 30, 45, 20, and 1 neurons respectively. The proposed methodology is tested using the Nijmegen and the mammographic image analysis society (MIAS) mammographic databases. Results are presented as the receiver operating characteristic (ROC) performance and are quantified by the area under the ROC curve (Az).
Keywords :
cancer; mammography; medical image processing; neural nets; sensitivity analysis; artificial neural network; digital mammogram; frequency subband; image spectrum; low-frequency subband; mammographic databases; mammographic image analysis society; microcalcification cluster detection; receiver operating characteristic; wavelet-based subband image decomposition; Artificial neural networks; Breast cancer; Cancer detection; Frequency; Image analysis; Image decomposition; Image reconstruction; Neural networks; Neurons; Testing; Breast cancer; diagnosis; microcalcification; neural networks; wavelet;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Graphics, Imaging and Vision: New Trends, 2005. International Conference on
Print_ISBN :
0-7695-2392-7
Type :
conf
DOI :
10.1109/CGIV.2005.30
Filename :
1521063
Link To Document :
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