A Generative Model to Synthesize EEG Data for Epileptic Seizure Prediction
Khansa Rasheed, Junaid Qadir, Terence J.O'Brien, Levin Kuhlmann, Adeel, Razi

TL;DR
This paper introduces a deep generative model to synthesize EEG data, enhancing epileptic seizure prediction accuracy through data augmentation and transfer learning with deep CNNs.
Contribution
It proposes a novel DCGAN-based method for generating synthetic EEG data and evaluates its effectiveness in improving seizure prediction models.
Findings
CESP achieves high sensitivity and low false positive rate.
Synthetic data improves deep learning model performance.
Transfer learning with data augmentation enhances prediction accuracy.
Abstract
Prediction of seizure before they occur is vital for bringing normalcy to the lives of patients. Researchers employed machine learning methods using hand-crafted features for seizure prediction. However, ML methods are too complicated to select the best ML model or best features. Deep Learning methods are beneficial in the sense of automatic feature extraction. One of the roadblocks for accurate seizure prediction is scarcity of epileptic seizure data. This paper addresses this problem by proposing a deep convolutional generative adversarial network to generate synthetic EEG samples. We use two methods to validate synthesized data namely, one-class SVM and a new proposal which we refer to as convolutional epileptic seizure predictor (CESP). Another objective of our study is to evaluate performance of well-known deep learning models (e.g., VGG16, VGG19, ResNet50, and Inceptionv3) by…
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Taxonomy
MethodsBatch Normalization · Convolution · Support Vector Machine · HuMan(Expedia)||How do I get a human at Expedia? · *Communicated@Fast*How Do I Communicate to Expedia? · Deep Convolutional GAN
