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Breast cancer classification using deep belief networks
Affiliation:1. Image and Video Systems Lab, Department of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Yuseong-Gu, Daejeon 305-701, Republic of Korea;2. Knowledge Media Design Institute, Department of Electrical and Computer Engineering, University of Toronto, Toronto, Ontario M5S 3GA, Canada;1. Department of Electrical and Electronics Engineering, VSSUT, Burla 768018, India;2. Department of Electronics and Telecommunication Engineering, VSSUT, Burla 768018, India;3. Machine Intelligence Research Labs (MIR Labs), Scientific Network for Innovation and Research Excellence, Washington-98071-2259, USA
Abstract:Over the last decade, the ever increasing world-wide demand for early detection of breast cancer at many screening sites and hospitals has resulted in the need of new research avenues. According to the World Health Organization (WHO), an early detection of cancer greatly increases the chances of taking the right decision on a successful treatment plan. The Computer-Aided Diagnosis (CAD) systems are applied widely in the detection and differential diagnosis of many different kinds of abnormalities. Therefore, improving the accuracy of a CAD system has become one of the major research areas. In this paper, a CAD scheme for detection of breast cancer has been developed using deep belief network unsupervised path followed by back propagation supervised path. The construction is back-propagation neural network with Liebenberg Marquardt learning function while weights are initialized from the deep belief network path (DBN-NN). Our technique was tested on the Wisconsin Breast Cancer Dataset (WBCD). The classifier complex gives an accuracy of 99.68% indicating promising results over previously-published studies. The proposed system provides an effective classification model for breast cancer. In addition, we examined the architecture at several train-test partitions.
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