Publication | Closed Access
EEG Sleep Stages Classification Based on Time Domain Features and Structural Graph Similarity
175
Citations
34
References
2016
Year
Sleep DisordersEngineeringBiometricsSocial SciencesSupport Vector MachineData ScienceData MiningPattern RecognitionCognitive ElectrophysiologyStatisticsStructural Graph SimilaritySleepNeuroinformaticsTemporal Pattern RecognitionNeuroimagingSignal ProcessingEeg Sleep StagesEeg SegmentData ClassificationSleep DisorderComputational NeuroscienceEeg Signal ProcessingTime Domain FeaturesNeuroscienceBrain ElectrophysiologyBraincomputer Interface
The electroencephalogram (EEG) signals are commonly used in diagnosing and treating sleep disorders. Many existing methods for sleep stages classification mainly depend on the analysis of EEG signals in time or frequency domain to obtain a high classification accuracy. In this paper, the statistical features in time domain, the structural graph similarity and the K-means (SGSKM) are combined to identify six sleep stages using single channel EEG signals. Firstly, each EEG segment is partitioned into sub-segments. The size of a sub-segment is determined empirically. Secondly, statistical features are extracted, sorted into different sets of features and forwarded to the SGSKM to classify EEG sleep stages. We have also investigated the relationships between sleep stages and the time domain features of the EEG data used in this paper. The experimental results show that the proposed method yields better classification results than other four existing methods and the support vector machine (SVM) classifier. A 95.93% average classification accuracy is achieved by using the proposed method.
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