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CCPNet136: automated detection of schizophrenia using carbon chain pattern and iterative TQWT technique with EEG signals

  • Mehmet Baygin
  • , Prabal Datta Barua
  • , Subrata Chakraborty
  • , Ilknur Tuncer
  • , Sengul Dogan
  • , Elizabeth Palmer
  • , Turker Tuncer
  • , Aditya P Kamath
  • , Edward J Ciaccio
  • , Acharya U Rajendra

Research output: Contribution to journalArticlepeer-review

23 Citations (Scopus)

Abstract

Objective . Schizophrenia (SZ) is a severe, chronic psychiatric-cognitive disorder. The primary objective of this work is to present a handcrafted model using state-of-the-art technique to detect SZ accurately with EEG signals. Approach . In our proposed work, the features are generated using a histogram-based generator and an iterative decomposition model. The graph-based molecular structure of the carbon chain is employed to generate low-level features. Hence, the developed feature generation model is called the carbon chain pattern (CCP). An iterative tunable q-factor wavelet transform (ITQWT) technique is implemented in the feature extraction phase to generate various sub-bands of the EEG signal. The CCP was applied to the generated sub-bands to obtain several feature vectors. The clinically significant features were selected using iterative neighborhood component analysis (INCA). The selected features were then classified using the k nearest neighbor (kNN) with a 10-fold cross-validation strategy. Finally, the iterative weighted majority method was used to obtain the results in multiple channels. Main results . The presented CCP-ITQWT and INCA-based automated model achieved an accuracy of 95.84% and 99.20% using a single channel and majority voting method, respectively with kNN classifier. Significance . Our results highlight the success of the proposed CCP-ITQWT and INCA-based model in the automated detection of SZ using EEG signals.

Original languageEnglish
Article number035008
Pages (from-to)1-20
JournalPhysiological Measurement
Volume44
Issue number3
DOIs
Publication statusPublished - 14 Mar 2023

Keywords

  • EEG signal classification
  • Engineering
  • carbon chain pattern
  • iterative tunable q-factor wavelet transform
  • schizophrenia detection
  • Biophysics
  • Engineering, Biomedical
  • Physiology

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