The Deep Learning Method Differentiates Patients With Bipolar Disorder From Controls With High Accuracy Using Eeg Data

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Date

2024

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Journal ISSN

Volume Title

Publisher

Sage Publications inc

Open Access Color

Green Open Access

No

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Top 10%
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Abstract

Background: Bipolar disorder (BD) is a mental disorder characterized by depressive and manic or hypomanic episodes. The complexity in the diagnosis of Bipolar disorder (BD) due to its overlapping symptoms with other mood disorders prompted researchers and clinicians to seek new and advanced techniques for the precise detection of Bipolar disorder (BD). One of these methods is the use of advanced machine learning algorithms such as deep learning (DL). However, no study of BD has previously adopted DL techniques using EEG signals. Method: EEG signals of 169 BD patients and 45 controls were cleaned from the artifacts and processed using two different DL methods: a one-dimensional convolutional neural network (1D-CNN) combined with the long-short term memory (LSTM) and a two-dimensional convolutional neural network (2D-CNN). Additionally, Class Activation Maps (CAMs) acquired from the bipolar and control groups were used to obtain distinctive regions to specify a particular class in an image. Results: Group identifications were confirmed with 95.91% overall accuracy through the 2D-CNN method, demonstrating very high sensitivity and lower specificity. Also, the overall accuracy obtained from the 1D-CNN + LSTM method was 93%. We also found that F4, C3, F7, and F8 electrode activities produce predominant features to detect the bipolar group. Conclusion: To our knowledge, this study used EEG-based DL analysis for the first time in BD. Our results suggest that the raw EEG-based DL algorithm can successfully differentiate individuals with BD from controls. Class Activation Map (CAM) analysis suggests that prefrontal changes are predominant in EEG data of patients with BD.

Description

Tarhan, Nevzat/0000-0002-6810-7096; Farhad, Shams/0000-0003-0591-2765; Turk, Omer/0000-0002-0060-1880; Uyulan, Caglar/0000-0002-6423-6720; Erguzel, Turker/0000-0001-8438-6542; Ciftci, Elvan/0000-0002-7452-2616

Keywords

Bipolar Disorder, BD, EEG, Deep Learning, DL, Neural Network, Advanced EEG-Based Bipolar Disorder Detection Technique, Bipolar Disorder, Deep Learning, Humans, Electroencephalography, Neural Networks, Computer, Algorithms

Fields of Science

03 medical and health sciences, 0302 clinical medicine

Citation

WoS Q

Q3

Scopus Q

Q2
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OpenCitations Citation Count
6

Source

Clinical Eeg and Neuroscience

Volume

55

Issue

2

Start Page

167

End Page

175
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CrossRef : 4

Scopus : 19

PubMed : 6

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Mendeley Readers : 33

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19

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Web of Science™ Citations

14

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2

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