An ensemble of optimal deep learning features for brain tumor classification

Ahsan Aziz, Muhammad Attique, Usman Tariq, Yunyoung Nam, Muhammad Nazir, Chang Won Jeong, Reham R. Mostafa, Rasha H. Sakr

Research output: Contribution to journalArticlepeer-review

41 Scopus citations

Abstract

Owing to technological developments, Medical image analysis has received considerable attention in the rapid detection and classification of diseases. The brain is an essential organ in humans. Brain tumors cause loss of memory, vision, and name. In 2020, approximately 18,020 deaths occurred due to brain tumors. These cases can be minimized if a brain tumor is diagnosed at a very early stage. Computer vision researchers have introduced several techniques for brain tumor detection and classification. However, owing to many factors, this is still a challenging task. These challenges relate to the tumor size, the shape of a tumor, location of the tumor, selection of important features, among others. In this study,we proposed a framework formultimodal brain tumor classification using an ensemble of optimal deep learning features. In the proposed framework, initially, a database is normalized in the form of high-grade glioma (HGG) and low-grade glioma (LGG) patients and then two pre-trained deep learning models (ResNet50 and Densenet201) are chosen. The deep learning models were modified and trained using transfer learning. Subsequently, the enhanced ant colony optimization algorithm is proposed for best feature selection from both deep models. The selected features are fused using a serial-based approach and classified using a cubic support vector machine. The experimental process was conducted on the BraTs2019 dataset and achieved accuracies of 87.8% and 84.6% forHGGand LGG, respectively. The comparison is performed using several classification methods, and it shows the significance of our proposed technique.

Original languageEnglish
Pages (from-to)2653-2670
Number of pages18
JournalComputers, Materials and Continua
Volume69
Issue number2
DOIs
StatePublished - 2021

Keywords

  • Brain tumor
  • Data normalization
  • Features fusion
  • Features optimization
  • Transfer learning

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