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SVM classification of epileptic EEG recordings through multiscale permutation entropy

Chapter
Publication Date:
2013
Short description:
SVM classification of epileptic EEG recordings through multiscale permutation entropy / Labate, D., Palamara, I., Mammone, N., Morabito, G., La Foresta, F., LA FORESTA, F., Morabito, F.C.. - (2013). (International Joint Conference on Neural Networks, IJCNN 2013 Dallas, TX, USA 4-9 August 2013) [10.1109/IJCNN.2013.6706869].
abstract:
Electroencephalogram (EEG) is a non-invasive diagnostic tool in clinical neurophysiology, especially with respect to epilepsy. The epileptic status is characterized by reduced complexity. New markers, based on nonlinear dynamics, like Permutation Entropy (PE) have been developed to measure EEG complexity. In this paper, Multiscale Permutation Entropy (MPE) complexity measure is proposed as a potentially useful framework for detecting epileptic events in EEG data and to distinguish healthy controls from patients. The achieved results show that: 1) MPE is able to discriminate between the two categories; 2) the use of multiple scales may substantially improve the specificity of the diagnosis. This is shown through an SVM-based classification network with three different kernels. The use of the SVM approach is also useful to infer clues about the extracted features.
Iris type:
2.1 Contributo in volume (Capitolo o Saggio)
Keywords:
SVM; EEG; Entropy; Biological Signal Processing; Support Vector Machines; Permutation Entropy
List of contributors:
Labate, D.; Palamara, I.; Mammone, N.; Morabito, G.; La Foresta, F.; LA FORESTA, Fabio; Morabito, Francesco Carlo
Authors of the University:
LA FORESTA Fabio
MORABITO Francesco Carlo
Mammone Nadia
Handle:
https://iris.unirc.it/handle/20.500.12318/9778
Book title:
Proceedings of the International Joint Conference on Neural Networks
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