Multiscale Fluctuation Dispersion Entropy of EEG as a Physiological Biomarker of Schizotypy

分裂型 脑电图 熵(时间箭头) 生物标志物 色散(光学) 统计物理学 计算机科学 模式识别(心理学) 人工智能 医学 物理 化学 精神科 热力学 光学 认知 生物化学
作者
Ahmad Zandbagleh,Hamed Azami,Sattar Mirzakuchaki,Mohammad Reza Daliri,Saeid Sanei,Preethi Premkumar
出处
期刊:IEEE Access [Institute of Electrical and Electronics Engineers]
卷期号:11: 110124-110135 被引量:8
标识
DOI:10.1109/access.2023.3321868
摘要

Altered electroencephalography (EEG) activity in schizotypal individuals is a powerful indicator of proneness towards psychosis. This alteration is beyond decreased alpha power often measured in resting state EEG. Multiscale fluctuation dispersion entropy (MFDE) measures the non-linear complexity of the fluctuations of EEGs and is a more effective approach compared to the traditional linear power spectral density (PSD) measures of EEG activity in patients with neurodegenerative disorders. In this study, we applied MFDE to EEG signals to distinguish high schizotypy (HS) and low schizotypy (LS) individuals. The study includes several trials from 29 participants psychometrically classified as HS (n=19) and LS (n=10). After preprocessing, MFDE was computed in frontal, parietal, central, temporal and occipital regions for each participant at multiple time scales. Statistical analysis and machine learning algorithms were used to calculate the differences in MFDE measures between the HS and LS groups. Our findings revealed significant differences in MFDE measures between LS and HS individuals in the delta frequency band (at time scale 100 ms). HS individuals exhibited increased complexity and irregularity compared to LS individuals in the delta frequency band particularly in the occipital region. Furthermore, the MFDE measures resulted in high accuracy (96.55%) in discriminating between HS and LS individuals and outperformed the models based on power spectrum, demonstrating the potential of MFDE as a neurophysiological marker for schizotypy traits. The increased non-linear fluctuation in delta frequency band in the occipital region of HS individuals implies the changes in cognitive functions, such as memory and attention, and has significant potential as a biomarker for schizotypy and proneness towards psychosis.
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