4.6 Article

Diabetic Retinopathy Diagnosis Using Multichannel Generative Adversarial Network With Semisupervision

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TASE.2020.2981637

关键词

Computer-aided diagnosis (CAD); diabetic retinopathy (DR); generative adversarial network (GAN); multichannel; semisupervised learning

资金

  1. National Natural Science Foundations of China [61872351, 61771465]
  2. International Science and Technology Cooperation Projects of Guangdong [2019A050510030]
  3. Strategic Priority CAS Project [XDB38000000]
  4. Major Projects from General Logistics Department of People's Liberation Army [AWS13C008]
  5. Shenzhen Key Basic Research Projects [JCYJ20180507182506416]

向作者/读者索取更多资源

This study introduces a semisupervised multichannel generative adversarial network (MGAN) for grading diabetic retinopathy (DR), which generates subfundus images corresponding to the scattering DR features and reduces the dependence on labeled data to identify inconspicuous lesion features effectively in high-resolution fundus images. The proposed model outperforms other representative models in terms of accuracy, area under ROC curve (AUC), sensitivity, and specificity, showing potential for effective DR recognition.
Diabetic retinopathy (DR) is one of the major causes of blindness. It is of great significance to apply deep-learning techniques for DR recognition. However, deep-learning algorithms often depend on large amounts of labeled data, which is expensive and time-consuming to obtain in the medical imaging area. In addition, the DR features are inconspicuous and spread out over high-resolution fundus images. Therefore, it is a big challenge to learn the distribution of such DR features. This article proposes a multichannel-based generative adversarial network (MGAN) with semisupervision to grade DR. The multichannel generative model is developed to generate a series of subfundus images corresponding to the scattering DR features. By minimizing the dependence on labeled data, the proposed semisupervised MGAN can identify the inconspicuous lesion features by using high-resolution fundus images without compression. Experimental results on the public Messidor data set show that the proposed model can grade DR effectively. Note to Practitioners-This article is motivated by the challenging problem due to the inadequacy of labeled data in medical image analysis and the dispersion of efficient features in high-resolution medical images. As for the inadequacy of labeled data in medical image analysis, the reasons mainly include the followings: 1) the high-quality annotation of medical imaging sample depends heavily on scarce medical expertise which is very expensive and 2) comparing with natural issues, it is more difficult to collect medical images because of privacy issues. It is of great significance to apply deep-learning techniques for diabetic retinopathy (DR) recognition. In this article, the multichannel generative adversarial network (GAN) with semisupervision is developed for DR-aided diagnosis. The proposed model can deal with DR classification problem with inadequacy of labeled data in the following ways: 1) the multichannel generative scheme is proposed to generate a series of subfundus images corresponding to the scattering DR features and 2) the proposed multichannel-based GAN (MGAN) model with semisupervision can make full use of both labeled data and unlabeled data. The experimental results demonstrate that the proposed model outperforms the other representative models in terms of accuracy, area under ROC curve (AUC), sensitivity, and specificity.

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