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A Novel Fuzzy Cognitive Map Based Method for the Differentiation of Intraductal Breast Lesions Publisher



Amirkhani A1 ; Mosavi MR1 ; Shokouhi SB1 ; Mohammadizadeh F2
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Authors Affiliations
  1. 1. Dept. of Electrical Engineering, Iran University of Science and Technology, Narmak, Tehran 16846-13114, Iran
  2. 2. Dept. of Pathology, Isfahan University of Medical Sciences, Isfahan, Iran

Source: 2012 5th International Conference on Biomedical Engineering and Informatics, BMEI 2012 Published:2012


Abstract

The diagnosis of intraductal breast lesions has always been considered one of the most challenging issues in breast cancer treatment. These lesions are divided into three groups: usual ductal hyperplasia (UDH), atypical ductal hyperplasia (ADH), and ductal carcinoma in situ (DCIS). Investigations indicate that 50% of surgeries performed on intraductal lesions have been unnecessary. Since patients afflicted with UDH don't need any surgery, appropriate classification of these lesions is very important. In this article, a new method based on the Fuzzy Cognitive Map (FCM) has been introduced for the screening and separation of UDH from the rest of intraductal lesions. For this purpose, 86 patients in the Shahid Beheshti Hospital of Isfahan were studied. The goal of this article is to increase the accuracy of classification of these lesions by using a new data fuzzification process. 10 of the most significant characteristics needed for the screening of these lesions were extracted by three pathologists and used as the main concepts of FCM. The degree of impact of these features on one another and the impact of each feature on the final concept were extracted as linguistic expressions and in the form of fuzzy rules. After defuzzification, the matrix of FCM weights was obtained. An overall accuracy of 95.35% was obtained on the entire database. The obtained results indicated that the proposed FCM not only enjoys a high level of accuracy, but also is capable of offering an acceptable FNR while reducing the value of FPR to zero. © 2012 IEEE.
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