Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images

© 2016 Thyroid cancer commences from an atypical growth of thyroid tissue at the edge of the thyroid gland. Initially, it forms a lump in the throat and an over-growth of this tissue leads to the formation of benign or malignant thyroid nodules. Blood test and biopsies are the standard techniques us...

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Main Authors: U. Rajendra Acharya, Pradeep Chowriappa, Hamido Fujita, Shreya Bhat, Sumeet Dua, Joel E.W. Koh, L. W.J. Eugene, Pailin Kongmebhol, K. H. Ng
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/55321
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-553212018-09-05T02:58:32Z Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images U. Rajendra Acharya Pradeep Chowriappa Hamido Fujita Shreya Bhat Sumeet Dua Joel E.W. Koh L. W.J. Eugene Pailin Kongmebhol K. H. Ng Business, Management and Accounting Computer Science Decision Sciences © 2016 Thyroid cancer commences from an atypical growth of thyroid tissue at the edge of the thyroid gland. Initially, it forms a lump in the throat and an over-growth of this tissue leads to the formation of benign or malignant thyroid nodules. Blood test and biopsies are the standard techniques used to diagnose the presence of thyroid nodules. But imaging modalities can improve the diagnosis and are marked as cost-effective, non-invasive and risk-free to identify the stages of thyroid cancer. This study proposes a novel automated system for classification of benign and malignant thyroid nodules. Raw images of thyroid nodules recorded using high resolution ultrasound (HRUS) are subjected to Gabor transform. Various entropy features are extracted from these transformed images and these features are reduced by locality sensitive discriminant analysis (LSDA) and ranked by Relief-F method. Over-sampling strategies with Wilcoxon signed-rank, Friedmans and Iman-Davenport post hoc tests are used to balance the classification data and also to improve the classification performance. Classifiers such as support vector machine (SVM), k-nearest neighbour (kNN), multi-layered perceptron (MLP) and decision tree are used for the characterization of benign and malignant thyroid nodules. We have obtained a classification accuracy of 94.3% with C4.5 decision tree classifier using 242 thyroid HRUS images. Our developed system can be used to screen the thyroid automatically and assist the radiologists. 2018-09-05T02:54:24Z 2018-09-05T02:54:24Z 2016-09-01 Journal 09507051 2-s2.0-84977519476 10.1016/j.knosys.2016.06.010 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84977519476&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/55321
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Business, Management and Accounting
Computer Science
Decision Sciences
spellingShingle Business, Management and Accounting
Computer Science
Decision Sciences
U. Rajendra Acharya
Pradeep Chowriappa
Hamido Fujita
Shreya Bhat
Sumeet Dua
Joel E.W. Koh
L. W.J. Eugene
Pailin Kongmebhol
K. H. Ng
Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images
description © 2016 Thyroid cancer commences from an atypical growth of thyroid tissue at the edge of the thyroid gland. Initially, it forms a lump in the throat and an over-growth of this tissue leads to the formation of benign or malignant thyroid nodules. Blood test and biopsies are the standard techniques used to diagnose the presence of thyroid nodules. But imaging modalities can improve the diagnosis and are marked as cost-effective, non-invasive and risk-free to identify the stages of thyroid cancer. This study proposes a novel automated system for classification of benign and malignant thyroid nodules. Raw images of thyroid nodules recorded using high resolution ultrasound (HRUS) are subjected to Gabor transform. Various entropy features are extracted from these transformed images and these features are reduced by locality sensitive discriminant analysis (LSDA) and ranked by Relief-F method. Over-sampling strategies with Wilcoxon signed-rank, Friedmans and Iman-Davenport post hoc tests are used to balance the classification data and also to improve the classification performance. Classifiers such as support vector machine (SVM), k-nearest neighbour (kNN), multi-layered perceptron (MLP) and decision tree are used for the characterization of benign and malignant thyroid nodules. We have obtained a classification accuracy of 94.3% with C4.5 decision tree classifier using 242 thyroid HRUS images. Our developed system can be used to screen the thyroid automatically and assist the radiologists.
format Journal
author U. Rajendra Acharya
Pradeep Chowriappa
Hamido Fujita
Shreya Bhat
Sumeet Dua
Joel E.W. Koh
L. W.J. Eugene
Pailin Kongmebhol
K. H. Ng
author_facet U. Rajendra Acharya
Pradeep Chowriappa
Hamido Fujita
Shreya Bhat
Sumeet Dua
Joel E.W. Koh
L. W.J. Eugene
Pailin Kongmebhol
K. H. Ng
author_sort U. Rajendra Acharya
title Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images
title_short Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images
title_full Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images
title_fullStr Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images
title_full_unstemmed Thyroid lesion classification in 242 patient population using Gabor transform features from high resolution ultrasound images
title_sort thyroid lesion classification in 242 patient population using gabor transform features from high resolution ultrasound images
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84977519476&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/55321
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